Automotive Circular Economy Ontology
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Automotive Circular Economy Ontology

This version:
https://w3id.org/pmd/automatce/releases/2026-06-19/automatce-full.owl
Revision:
2026-06-19
Authors:
https://orcid.org/0000-0003-0473-0070
https://orcid.org/0000-0003-0744-8855
https://orcid.org/0009-0003-1503-4422
https://orcid.org/0009-0007-7468-3544
Contributors:
https://orcid.org/0000-0003-0473-0070
https://orcid.org/0000-0003-0744-8855
https://orcid.org/0009-0003-1503-4422
https://orcid.org/0009-0007-7468-3544
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Cite as:
https://orcid.org/0000-0003-0473-0070, https://orcid.org/0000-0003-0744-8855, https://orcid.org/0009-0003-1503-4422, https://orcid.org/0009-0007-7468-3544. Automotive Circular Economy Ontology. Revision: 2026-06-19. Retrieved from: https://w3id.org/pmd/automatce/releases/2026-06-19/automatce-full.owl
Provenance of this page
Ontology Specification Draft

Automotive Circular Economy Ontology: Overview back to ToC

This ontology has the following classes and properties.

Classes

Object Properties

Data Properties

Annotation Properties

Named Individuals

SWRL Rules

Automotive Circular Economy Ontology: Description back to ToC

Application ontology for automotive circular-economy product, material, sustainability, usage, dismantling, engineering and transactional data aligned to PMDCore and BFO 2020.

Cross-reference for Automotive Circular Economy Ontology classes, object properties and data properties back to ToC

This section provides details for each class and property defined by Automotive Circular Economy Ontology.

Classes

absorption of radiationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000802

process of taking up radiation by a material entity
has super-classes
process c
has sub-classes
absorption of wave radiation c

absorption of wave radiationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0001008

process of taking up elctromagnetic radiation by a material entity
has super-classes
absorption of radiation c

action specificationc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000007

A directive information entity that describes an action the bearer will take.
has super-classes
directive information entity c

activity (thermodynamic)c back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020161

Thermodynamic activity is a relational quality that inheres between a chemical species and a non-ideal solution and represents the effective concentration of the species accounting for particle interactions.
has super-classes
relational quality c
is disjoint with
chemical potential c, electric potential c, size c, mass c, energy c, shape c

activity typec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010372

A categorical value specification that classifies a standard value of a routing operation by the kind of activity it quantifies, such as machine, labour, or setup.
Example
An activity type that classifies a standard value as labour time.
has super-classes
categorical value specification c

actor numberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010196

An identifier assigned to an actor in a recycling, logistics, or supply-chain process.
Example
An operating number used to identify a recycling batch actor.
has super-classes
identifier c

actor role typec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010197

An information content entity that records the role type under which an actor participates in a recycling or logistics process.
Example
Sender, receiver, recycler, operator, or transporter recorded as an actor role type.
has super-classes
information content entity c

actual dismantlabilityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010144

A disposition assessment that records how dismantlable a product or component was in an observed dismantling event.
Example
An actual dismantlability assessment from a dismantler after removing a door module.
has super-classes
dismantlability c

actual dismantling timec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010141

A temporal interval occupied by an observed dismantling process for a product, vehicle, or component.
Example
The measured time in minutes to remove a component from an end-of-life vehicle.
has super-classes
temporal interval c

actual lifetimec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010051

A temporal interval extending from a stated start event to an observed lifecycle event of a product or component.
Example
The time between first vehicle registration and dismantling of a component.
has super-classes
temporal interval c

additivec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010001

This class represents the additive material itself; the context-dependent function is represented by additive role.
An engineered material intentionally incorporated in a base material in a comparatively small amount to modify processing behavior, performance properties, appearance, or cost.
Example
A UV stabilizer added to an exterior polymer trim material.
has super-classes
engineered material c

additive rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000003

Additives are distinct from fillers (which bulk up volume) and the matrix. They perform specific chemical or physical modifications.
A role borne by a substance intentionally added in relatively small amounts to modify the processing characteristics, performance properties, or cost of a base material.
Example
UV stabilizers added to dashboard polymers to prevent sun damage; Plasticizers added to PVC.
has super-classes
role c
has sub-classes
colorant role c

ageing simulationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010300

A simulation process that represents changes in material or component properties caused by ageing conditions.
Example
A simulation of property degradation after thermal ageing.
has super-classes
simulation process c

agentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000011

is equivalent to
material entity c and (bearer of op some agent role c)
has super-classes
material entity c
has sub-classes
buyer c, consignee c, consignor c, distributor c, shipper c, supplier c, supply chain agent c, wholesaler c

agent rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000054

role that someone or something has when they act on behalf of a person, engineered system or a group of agents
has super-classes
role c
has sub-classes
buyer role c, consignee role c, consignor role c, distributor role c, supplier role c, supply chain agent role c, wholesaler role c

aggregate statec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000512

an intensive quality representing the physical state of a material, such as solid, liquid, or gasous
is equivalent to
specified by value op exactly 1 aggregate state value c
has super-classes
intensive quality c
is disjoint with
ASTM grainsize c, crystal structure c, defect density c, density c, crystallographic texture c, pressure c, specific surface area c, temperature c, porosity c, grain size distribution c, composition c, metallic grain structure c

aggregate state valuec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020116

The aggregate state value is a categorical value specification that specifies value of the aggregate state quality.
is equivalent to
{ aggregate state solid ni , aggregate state liquid ni , aggregate state gaseous ni , aggregate state plasma ni , aggregate state atom gas ni , aggregate state supercritical fluid ni , aggregate state mesomorphic ni , aggregate state suprafluid ni , aggregate state suprasolid ni }
has super-classes
categorical value specification c

agreementc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000000

understanding between two or more parties that contains a set of commitments on the part of the parties
has super-classes
information content entity c
has sub-classes
commercial service agreement c, purchase order c

alternative item groupc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010361

An information content entity that groups the bill of materials positions which may substitute for one another to satisfy a single component requirement.
Example
A group holding two interchangeable fasteners ranked by usage probability.
has super-classes
information content entity c

anonymized vehicle identification numberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010164

An identifier derived from a vehicle identification number by anonymization or hashing so that the vehicle can be linked across records without exposing the original vehicle identification number.
Example
A hashed vehicle identification number used in circular economy data exchange.
has super-classes
vehicle identification number c

approved supplier assignmentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010374

An information content entity that is about a material and a supplier and records that the supplier is approved to provide that material.
Example
A source list entry recording that supplier SHS is approved to provide a component.
has super-classes
information content entity c

ash contentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010105

The Excel source references ISO 3451 for ash content, often used to estimate inorganic filler content.
A mass proportion that quantifies the inorganic residue remaining after controlled combustion or calcination of a material sample.
Example
Ash content used to estimate glass fiber or mineral filler content in a polymer compound.
has super-classes
mass proportion c

assayc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/OBI_0000070

A planned process that has the objective to produce information about a material entity (the evaluant) by examining it.
has super-classes
completely executed planned process c

assembling processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000524

An assembling process is a manufacturing process that mounts or demounts components.
is equivalent to
assembly process c
has super-classes
manufacturing process c

assembly processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000132

manufacturing process in which a number of material components are physically connected to each other to form an assembly
has super-classes
manufacturing process c

ASTM grainsizec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000503

The ASTM grain size is a quality that is measured through a process that follows the ASTM standard.
has super-classes
grain size c
is disjoint with
aggregate state c, crystal structure c, defect density c, density c, crystallographic texture c, pressure c, specific surface area c, temperature c, porosity c, grain size distribution c, composition c, metallic grain structure c

atomc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/CHEBI_33250

A chemical entity constituting the smallest component of an element having the chemical properties of the element.
has super-classes
chemical entity c
has sub-classes
metal atom c

automotive material sharec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010125

A mass proportion that quantifies the share of material content originating from automotive sources.
Example
The fraction of recycled polymer sourced from end-of-life vehicle components.
has super-classes
mass proportion c

average dismantling timec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010061

A temporal interval that represents the mean duration of dismantling a product or component under specified conditions.
Example
An average dismantling time of 12 minutes for removal of a door module.
has super-classes
temporal interval c

batchc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010175

A disconnected material entity aggregate that is produced, handled, or traced as one quantity under a common production or logistics context.
Example
A batch of polymer granulate produced under one manufacturing order.
has super-classes
lot c
has sub-classes
recycling batch c

batch identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_0080002

denotes all material artifact generated by one distinguishable manufacturing process run
has super-classes
identifier c
has sub-classes
catena-x batch identifier c, material batch identifier c, recycling batch identifier c

best treatment techniquesc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010063

An information content entity that recommends preferred treatment techniques for a dismantled product, component, or material in a given circular economy scenario.
Example
A recommendation to remove electronics before shredding a polymer-rich component.
has super-classes
information content entity c

bill of materialsc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010358

A plan specification that prescribes the material components and the quantities required to manufacture a product.
Example
The bill of materials of a belt tensioner, listing each required component and its quantity.
has super-classes
plan specification c

bio-based compositec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0090018

composite consisting of at least one constituent derived from biological or bio-based sources
Example
such as Wood-Plastic Composite (WPC), Hemp-fiber reinforced Polypropylene
is equivalent to
composite c and (has part op some bio-based material c)
has super-classes
composite c

bio-based materialc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0090016

material intentionally processed from materials derived from living (or once-living) organisms
Example
Engineered Biopolymers such as Polylactic Acid (PLA);  Reconstituted Biopolymers such as Regenerated Cellulose (Rayon/Viscose); Biocomposites such as Wood-Plastic Composites (WPC);  Biochemicals (e.g. Bio-based Adhesives)
is equivalent to
material c and (output of op some manufacturing process c and (has specified input op some biological material c))
has super-classes
material c

biological compositec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0090013

composite consisting of two or more distinct material phases organized in a multi-scale structure that act synergistically to fulfill specific properties or functions
Example
 such as Wood, Bone, Silk, Wool;
is equivalent to
composite c and (output of op some biological process c)
has super-classes
composite c

biological materialc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0090012

material produced by a living organism
Example
Biological Comosite such as Wood, Bone, Silk, Wool;  Biopolymers such as cellulose, colagene;  Biogenic minerals such as hydroxyapatite
is equivalent to
material c and (output of op some biological process c)
has super-classes
material c
has sub-classes
biopolymer c

biological processc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/GO_0008150

A biological process is the execution of a genetically-encoded biological module or program. It consists of all the steps required to achieve the specific biological objective of the module. A biological process is accomplished by a particular set of molecular functions carried out by specific gene products (or macromolecular complexes), often in a highly regulated manner and in a particular temporal sequence.
has super-classes
process c
is disjoint with
completely executed planned process c

biopolymerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0090014

polymer produced by the metabolic processes of a living organism
Example
such as Polysaccharides like cellulose or Chitin; Proteins like colagene or Fibroin
is equivalent to
polymer c and biological material c
has super-classes
biological material c, polymer c

body part qualityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010077

A quality of a body part component that characterizes its externally relevant condition, such as paint damage, dents, corrosion, and component-specific defects.
Example
A door panel quality assessment based on dents and paint scratches.
has super-classes
quality c

bom positionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010359

An information content entity that is about a required component of an assembly and states the quantity and item number of that requirement.
Example
Position 0010 of a belt tensioner bill of materials, requiring one bracket.
has super-classes
information content entity c

bondc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0050000

A bond is a relational quality describing the force interaction between atoms.
has super-classes
relational quality c
has sub-classes
metallic bond c
is disjoint with
proportion c

brandc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010190

An identifier that records the commercial brand associated with a vehicle, part, material, or product.
Example
A vehicle brand recorded in product data.
has super-classes
identifier c

bravais lattice (3D)c back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020099

TODO: possibly extend for 2D (Graphene etc) More elaborate crystal descriptions may be found in http://emmo.info/domain-crystallography/crystallography or https://purls.helmholtz-metadaten.de/disos/cso
The bravais lattice is a categorical value specification that specifies value of the crystal structure quality. It describes the possible geometric arrangement of lattice points in a crystal. The present descriptor is limited to the 14 possible three-dimensional arrangements.
is equivalent to
{ bravais lattice triclinic primitive ni , bravais lattice monoclinic primitive ni , bravais lattice monoclinic base-centered ni , bravais lattice orthorombic primitive ni , bravais lattice orthorhombic base-centered ni , bravais lattice orthorhombic body-centered ni , bravais lattice orthorhombic face-centered ni , bravais lattice tetragonal primitive ni , bravais lattice tetragonal body-centered ni , bravais lattice hexagonal rhombohedral primitive ni , bravais lattice hexagonal hexagonal primitive ni , bravais lattice cubic primitive ni , bravais lattice cubic body-centered ni , bravais lattice cubic face-centered ni }
has super-classes
categorical value specification c

bulkc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000538

The bulk is a fiat object part that describes the volume or mass of material considered as a whole, often in contrast to surface or interface phenomena.
has super-classes
fiat object part c

business functionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000091

function of an organization to partake in for profit activities as prescribed by the objectives specified by that organization
has super-classes
function c
has sub-classes
transportation business function c

business organizationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000047

organization engaging in or planning to engage in any activity of buying and selling goods or services for a profit
is equivalent to
organization c and (bearer of op some business function c)
has super-classes
organization c
is in domain of
owns op

business partner numberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000021

Expected value datatype: xsd:string; expected unit: not specified.
An identifier assigned to a business partner in an automotive supply-chain network.
Example
BPNL00000003AY2 (Example BPN).
has super-classes
identifier c
has sub-classes
catena-x business partner number c, owner business partner number c

business processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000130

planned process which is prescribed by a plan specification with one or more objectives specified by a business organization
has super-classes
process c
has sub-classes
buying business process c, commercial service c, packaging process c, product production process c, receiving process c, recycling process step c, selling business process c, shipment preparation process c, supply chain process c, supplying business process c

buyerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000012

person or organization which has a buyer role
is equivalent to
(organization c or person c) and (bearer of op some buyer role c)
has super-classes
agent c

buyer rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000055

agent role held by a person or organization when it buys a product or a service
has super-classes
agent role c

buying business processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000111

business process wherein a financial instrument is used by an agent (buyer) to acquire ownership of a product or commercial service from another agent (seller) for the buyer itself or for another agent (customer)
has super-classes
business process c

cadmium threshold compliancec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010236

Expected value datatype: xsd:boolean; expected unit: not specified.
A data item that records whether cadmium concentration complies with a stated threshold.
Example
A false value indicating that cadmium concentration exceeds the applicable threshold.
has super-classes
data item c

calibration timec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010294

Expected value datatype: xsd:dateTime; expected unit: not specified.
A date value specification that records when a simulation card or material model was calibrated.
Example
The calibration time of a material card used in an injection molding simulation.
has super-classes
date value specification c

carrierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000021

person or business organization who provides transportation services
is equivalent to
(organization c or person c) and (bearer of op some transportation service provider role c)
has super-classes
service provider c

CAS numberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010352

An identifier assigned by the Chemical Abstracts Service to a chemical substance.
Example
A CAS number used to identify a chemical constituent in a material composition.
has super-classes
identifier c

categorical value specificationc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/OBI_0001930

A value specification that is specifies one category out of a fixed number of nominal categories
has super-classes
value specification c
has sub-classes
activity type c, aggregate state value c, bravais lattice (3D) c, metallic grain structures c, order scale value c, procurement type specification c

catena-x batch identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010176

A batch identifier assigned for anonymous traceability of a batch in the Catena-X dataspace.
Example
A Catena-X identifier used to reference a batch without exposing a local production number.
has super-classes
batch identifier c

catena-x business partner numberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010092

This is modeled as a Catena-X-specific subtype of the existing business partner number class.
A business partner number used in Catena-X to identify a legal entity, site, or address participating in automotive data exchange.
Example
A Catena-X BPNL identifier for a supplier legal entity.
has super-classes
business partner number c

change of temperaturec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000549

change of temperature is a process in which a particpant changes its temperature
has super-classes
process c

chemical characterizationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010342

An information content entity that describes the chemical composition or chemical properties of a material.
Example
A chemical characterization listing additives and regulated substances in a polymer compound.
has super-classes
information content entity c

chemical compositionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000551

See the editor note of composition to understand the difference between composition and chemical composition. See the pattern example of composition to underatand the difference between composition and proportion.
The chemical composition is an intensive quality of a portion of matter which describes the types and proportions of pure chemical elements in the portion of matter, and it is a subject of some chemical composition data item.
has super-classes
composition c

chemical entityc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/CHEBI_24431

A chemical entity is a physical entity of interest in chemistry including molecular entities, parts thereof, and chemical substances.
has super-classes
material entity c
has sub-classes
atom c

chemical medium service life componentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010264

A chemical service life component limited by exposure to a specified chemical medium.
Example
A service life component for contact with engine oil or coolant.
has super-classes
chemical service life component c

chemical potentialc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000553

an intensive quality of a thermodynamic system describing the energy change associated with the addition of a small quantity of a substance to a system at constant temperature and pressure.
has super-classes
intensive quality c
is disjoint with
electric potential c, size c, mass c, energy c, activity (thermodynamic) c, shape c

chemical reactionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000869

The occurrence of (a) chemical reaction is the process in which substances interact to form new chemical compounds or alter their molecular structure.
has super-classes
process c

chemical recyclingc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010221

A recycling process that converts material through chemical reaction into monomers, feedstock, or other chemical products.
Example
Solvolysis or depolymerization applied to a polymer waste stream.
has super-classes
recycling c

chemical service life componentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010263

A service life component limited by chemical exposure conditions.
Example
A 5000 h chemical service life component under stated oil exposure.
has super-classes
service life c
has sub-classes
chemical medium service life component c, humidity medium service life component c

child process typec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010216

An information content entity that classifies a subordinate process step in a recycling process.
Example
Shredding recorded as the child process type for a recycling batch step.
has super-classes
information content entity c

circular economy informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010246

An information content entity that records reuse, repair, remanufacturing, recycling, recovery, or disposal information for a product or component.
Example
Circular economy information containing selected r-strategy, restricted substance compliance, and required tools.
has super-classes
information content entity c
is in domain of
has selected r-strategy op
is in range of
has circular economy information op

coefficient of linear thermal expansionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000027

Expected value datatype: xsd:float; expected unit: 1/K.
A thermal property that quantifies fractional length change per unit temperature change.
Example
CLTE measured parallel and normal to fiber orientation in a reinforced polymer part.
has super-classes
thermal property c
has sub-classes
coefficient of linear thermal expansion parallel to flow c, coefficient of linear thermal expansion transverse to flow c

coefficient of linear thermal expansion parallel to flowc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010350

Expected value datatype: xsd:float; expected unit: 1/K.
A coefficient of linear thermal expansion measured or specified parallel to the material flow direction.
Example
CLTE parallel to flow for an injection molded glass-fiber-reinforced polyamide.
has super-classes
coefficient of linear thermal expansion c

coefficient of linear thermal expansion transverse to flowc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010351

Expected value datatype: xsd:float; expected unit: 1/K.
A coefficient of linear thermal expansion measured or specified transverse to the material flow direction.
Example
CLTE transverse to flow for an injection molded glass-fiber-reinforced polyamide.
has super-classes
coefficient of linear thermal expansion c

colorc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000008

Can be defined descriptively (Red) or metrologically (L*a*b* coordinates).
An optical property that characterizes reflected or transmitted light by hue, saturation, and brightness.
Example
The 'Piano Black' finish on a B-pillar trim.
has super-classes
intensive quality c

colorant rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000006

This role can be borne by organic dyes or inorganic pigments.
A role borne by an additive substance when its primary function is to impart color to a material.
Example
Carbon black acting as a pigment to turn a tire black.
has super-classes
additive role c

commercial servicec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000112

business process that consists of a service provisioning process and a consumption process
has super-classes
business process c
has sub-classes
logistics service c, manufacturing service c

commercial service agreementc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000001

agreement between a customer and service provider that is about some commercial service to be provided by the service provider in exchange for compensation from the customer
has super-classes
agreement c

commercial service specificationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000093

plan specification that prescribes a commercial service
has super-classes
plan specification c

completely executed planned processc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/COB_0000035

has super-classes
planned process c
has sub-classes
assay c, computing process c, identifier creating process c, manufacturing process c, obsolete planned process c, publishing process c
is in domain of
achieves_planned_objective op, has specified input op, has specified output op
is in range of
is specified input of op, is specified output of op
is disjoint with
biological process c

completenessc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010079

A quality of a product or component indicating whether required subcomponents, fasteners, interfaces, or accessories are present.
Example
A mirror assembly assessed as complete because housing, glass, wiring, and mounting clips are present.
has super-classes
quality c

component agec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010097

A temporal interval that extends from a stated component reference event to a stated observation event.
Example
A component age of six years measured from vehicle production date to dismantling date.
has super-classes
temporal interval c

component age in usec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010268

A temporal interval that extends from a stated component use event to a stated observation event.
Example
Age of a component calculated from installation date to dismantling date.
has super-classes
temporal interval c

component identification informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010245

An information content entity that records identifiers for a product, component, vehicle, material, or batch.
Example
A component identification record containing part number, batch identifier, and anonymized vehicle identification number.
has super-classes
information content entity c

component informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010095

An information content entity that aggregates identifiers, specifications, usage data, condition data, or circular economy information about a component.
Example
A component record containing part number, material designation, mileage, and reuse assessment.
has super-classes
information content entity c

component mileagec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010096

A process attribute that quantifies the travel distance accumulated by a component during use in a vehicle.
Example
A used alternator recorded with 125000 km of component mileage.
has super-classes
process attribute c

component positionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010239

An information content entity that records the position of a component within a product or vehicle.
Example
Front left door recorded as the component position within a vehicle.
has super-classes
information content entity c

component quantityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010240

Expected value datatype: xsd:integer; expected unit: count.
A quality that quantifies how many instances of a component occur in a product or vehicle.
Example
Four identical door speakers recorded as a component quantity.
has super-classes
quality c

component statusc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010267

A quality of a component that records its functional, operational, or lifecycle state during use or assessment.
Example
In service, failed, removed, repaired, or reused as a component status.
has super-classes
quality c

compositec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000577

An object aggregate that consists of two or more bonded materials with dissimilar physical or chemical properties which are used to complement each other where the parts remain seperate and distinct in the resulting object aggregate.
Example
carbon fibre reinforced polymer
laminated glass
wood
hard metal composites for abrasive tools
has super-classes
connected material entity aggregate c
has sub-classes
bio-based composite c, biological composite c, polyamide 66 glass fiber 25 percent c

compositionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0025001

Composition is an intensive quality which defines types and proportions of compounds present in a material entity and is subject of some composition data item.
Example
4 vol.% nitric acid solution, Styrene-Butadiene-Styrene (SBS) Block Copolymer with 50 vol.% of both styrene and butadiene
has super-classes
intensive quality c
has sub-classes
chemical composition c, material composition c, organic composition c, overall material composition c
is in range of
has material composition op
is disjoint with
ASTM grainsize c, aggregate state c, crystal structure c, defect density c, density c, crystallographic texture c, pressure c, specific surface area c, temperature c, porosity c, grain size distribution c, metallic grain structure c

computing processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000583

A process that involves the systematic use of computational methods and tools to perform simulations, analyses, or data transformations to achieve specific scientific or engineering goals.
has super-classes
completely executed planned process c
has sub-classes
simulation process c

Conceptc back to ToC or Class ToC

IRI: http://www.w3.org/2004/02/skos/core#Concept

has super-classes
information content entity c
has members
1. steel and iron materials ni, 1.1 steels / cast steel / sintered steel ni, 1.1.1 unalloyed, low alloyed ni, 1.1.2 highly alloyed ni, 1.2 cast iron ni, 1.2.1 cast iron with lamellar graphite / tempered cast iron ni, 1.2.2 cast iron with nodular graphite / vermicular cast iron ni, 1.2.3 highly alloyed cast iron ni, 2. light alloys, cast and wrought alloys ni, 2.1 aluminium and aluminium alloys ni, 2.1.1 cast aluminium alloys ni, 2.1.2 wrought aluminium alloys ni, 2.2 magnesium and magnesium alloys ni, 2.2.1 cast magnesium alloys ni, 2.2.2 wrought magnesium alloys ni, 2.3 titanium and titanium alloys ni, 3. nonferrous heavy metals, cast and wrought alloys ni, 3.1 copper ni, 3.2 copper alloys ni, 3.3 zinc alloys ni, 3.4 nickel alloys ni, 3.5 lead ni, 4. special metals ni, 4.1 platinum / rhodium ni, 4.2 other special metals ni, 5. polymer materials ni, 5.1 thermoplastics (filled / unfilled) ni, 5.2 thermoplastic elastomers ni, 5.3 elastomers / elastomeric compounds ni, 5.4 duromers ni, 5.4.1 polyurethane ni, 5.4.2 unsaturated polyester ni, 5.4.3 other duromers ni, 5.5 polymeric compounds ni, 5.5.1 plastics ni, 5.5.2 textiles ni, 6. process polymers ni, 6.1 lacquers ni, 6.2 adhesives, sealants ni, 6.3 underseal ni, 7. other materials and material compounds ni, 7.1 modified organic natural materials ni, 7.2 ceramics / glass ni, 7.3 other compounds ni, 8. electronics / electrics ni, 8.1 electronics ni, 8.2 electrics ni, 9. fuels and auxiliary means ni, 9.1 fuels ni, 9.2 lubricants ni, 9.3 brake fluid ni, 9.4 coolant / other glycols ni, 9.5 refrigerant ni, 9.6 washing water, battery acids ni, 9.7 preservative ni, 9.8 other fuels and auxiliary means ni

Concept Schemec back to ToC or Class ToC

IRI: http://www.w3.org/2004/02/skos/core#ConceptScheme

has super-classes
information content entity c
has members
VDA 231-106 material classification ni

connected material entity aggregatec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000890

An object aggregate that is a mereological sum of separate material entities, which adhere to one another through chemical bonds or physical junctions that go beyond gravity.
Example
the atoms of a molecule, the molecules forming the membrane of a cell, the epidermis in a human body
has super-classes
object aggregate c
has sub-classes
composite c, polycrystal c

consigneec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000013

person or business organization that receives some shipment
is equivalent to
(organization c or person c) and (bearer of op some consignee role c)
has super-classes
agent c
has sub-classes
recycling batch receiver c

consignee rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000056

role held by a person or business organization when it receives a shipment from a carrier and owns the shipment after the receipt
has super-classes
agent role c

consignorc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000014

person or business organization that prepares and sends shipments for transport
is equivalent to
(organization c or person c) and (bearer of op some consignor role c)
has super-classes
agent c
has sub-classes
recycling batch sender c

consignor rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000057

role held by a business organization or person when it prepares, initiates, and consigns a shipment it owns
has super-classes
agent role c

consumer sharec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010251

A mass proportion that quantifies consumer-origin material within a material source or recycled content record.
Example
The post-consumer automotive share in a recycled polymer material source.
has super-classes
mass proportion c

containerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000042

piece of transport equipment that is designed to contain some material entities
has super-classes
piece of transport equipment c

container descriptionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010214

An information content entity that describes a container type or container instance.
Example
A standardized description such as roll-off container for a recycling batch.
has super-classes
information content entity c

container massc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010211

Expected value datatype: xsd:float; expected unit: kg.
A mass quality that quantifies the empty mass of a container.
Example
An empty recycling container with a mass of 3000 kg.
has super-classes
mass c

container type identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010213

An identifier assigned to a standardized container type.
Example
An AVAL container type identifier used for a recycling container.
has super-classes
identifier c

container volumec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010212

Expected value datatype: xsd:positiveInteger; expected unit: L.
A volume quality that quantifies the internal capacity of a container.
Example
A roll-off container with a capacity of 20000 L.
has super-classes
volume c

continuantc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000002

(Elucidation) A continuant is an entity that persists, endures, or continues to exist through time while maintaining its identity
Example
A human being; a tennis ball; a cave; a region of space; someone's temperature
has super-classes
entity c
has sub-classes
generically dependent continuant c, independent continuant c, specifically dependent continuant c
is in domain of
participates in op
is in range of
has participant op
is disjoint with
occurrent c

continuant fiat boundaryc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000140

(Elucidation) A continuant fiat boundary b is an immaterial entity that is of zero, one or two dimensions & such that there is no time t when b has a spatial region as continuant part & whose location is determined in relation to some material entity
Example
As for fiat point, fiat line, fiat surface
has super-classes
immaterial entity c
is disjoint with
spatial region c, site c

corroded regionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010174

A fiat object part of a material entity that is spatially demarcated by corrosion-related material alteration.
Example
A rusted area on a steel mounting bracket identified during dismantling inspection.
has super-classes
fiat object part c

corrosionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020022

Corrosion is typically of interest when the change of the material affects the objects ability to fulfill its function.
corrosion is a slow chemical or electrochemical degradation process of a material entity due to its interaction with the surrounding environment.
has super-classes
process c

crack countc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010084

A quality that records the number of cracks observed on a product, component, coating, or material surface.
Example
Two cracks recorded in the paint layer during dismantling inspection.
has super-classes
quality c

creep simulationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010299

A simulation process that represents time-dependent deformation under sustained load.
Example
A creep simulation based on strain-time curves from ISO 899 testing.
has super-classes
simulation process c

crystalc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020003

A crystal is an object that has a quality "crystal structure".
has super-classes
object c
has sub-classes
crystallite c

crystal structurec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000591

The finite set of periodic geometric arrangements is described e.g. by the 14 possible Bravais Lattices in three-dimensional space.
an intensive qualtty of a crystal that embodies the periodic geometric arrangement of entities in a crystal lattice.
is equivalent to
specified by value op exactly 1 bravais lattice (3D) c
has super-classes
intensive quality c
is disjoint with
ASTM grainsize c, aggregate state c, defect density c, density c, crystallographic texture c, pressure c, specific surface area c, temperature c, porosity c, grain size distribution c, composition c, metallic grain structure c

crystallitec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000663

A crystal grain is a crystal that is part of a polycrystal.
has super-classes
crystal c

crystallographic texturec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000853

typically observed through crystallographic analysis
an intensive quality describing the arrangement and orientation of grains in a polychrystal
has super-classes
intensive quality c
is disjoint with
ASTM grainsize c, aggregate state c, crystal structure c, defect density c, density c, pressure c, specific surface area c, temperature c, porosity c, grain size distribution c, composition c, metallic grain structure c

damage areac back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010086

A quality that quantifies the surface area of visible damage on a product, component, coating, or material surface.
Example
A paint damage area of 50 square centimeters on a door panel.
has super-classes
quality c

data itemc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000027

An information content entity that is intended to be a truthful statement about something (modulo, e.g., measurement precision or other systematic errors) and is constructed/acquired by a method which reliably tends to produce (approximately) truthful statements.
has super-classes
information content entity c
has sub-classes
cadmium threshold compliance c, environmental spectrum c, further content c, hexavalent chromium threshold compliance c, incident record c, lead threshold compliance c, load spectrum c, measurement datum c, mercury threshold compliance c, pressure-volume-temperature data c, pressure-volume-temperature data point c, temperature over cycles c, temperature spectrum c, unusual properties c

date value specificationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0001044

A datum that represents a date or time interval associated with another specification.
has super-classes
value specification c
has sub-classes
calibration time c, end timestamp c, measurement timestamp c, production date c, start timestamp c, year of construction c

datum labelc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000009

A label is a symbol that is part of some other datum and is used to either partially define the denotation of that datum or to provide a means for identifying the datum as a member of the set of data with the same label
has super-classes
information content entity c
has sub-classes
measurement unit label c

defect densityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000595

an intensive quality describing the number of defects per unit volume or area in a material, which can affect its mechanical and electronic properties
has super-classes
intensive quality c
is disjoint with
ASTM grainsize c, aggregate state c, crystal structure c, density c, crystallographic texture c, pressure c, specific surface area c, temperature c, porosity c, grain size distribution c, composition c, metallic grain structure c

deformationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000596

The deformation is a process describing a change in the shape, size, or structure of a material often under the influence of stress or force.
has super-classes
process c

densityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000597

The density is a universal intensive quality representing the unit mass of a portion of matter per unit volume.
has super-classes
intensive quality c
is disjoint with
ASTM grainsize c, aggregate state c, crystal structure c, defect density c, crystallographic texture c, pressure c, specific surface area c, temperature c, porosity c, grain size distribution c, composition c, metallic grain structure c

dent damagec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010085

A quality of a sheet metal or body component indicating the presence or extent of dents or deformations that impair the component shape.
Example
A quarter panel with two visible dents after vehicle use.
has super-classes
quality c

design feedback informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010242

An information content entity that records dismantling, reuse, repair, or recycling observations for later design improvement.
Example
Feedback that a bonded joint should be replaced by a reversible fastening for easier dismantling.
has super-classes
information content entity c

devicec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000602

A device is an object that is designed to perform a specific function or task involving measurement, manipulation, processing, or analysis.
has super-classes
object c
has sub-classes
disassembly tool c, injection molding machine c, mould c

directive information entityc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000033

An information content entity whose concretizations indicate to their bearer how to realize them in a process.
has super-classes
information content entity c
has sub-classes
action specification c, objective specification c, plan specification c, required tool and software c, safety information c, selected r-strategy c

disassembly softwarec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010064

A software that supports, guides, documents, or validates disassembly or dismantling of a product or component.
Example
A workshop application that displays product-specific disassembly instructions.
has super-classes
software c

disassembly toolc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010065

A device used to carry out a disassembly or dismantling operation on a product or component.
Example
A puller tool used to remove a clipped trim component without damage.
has super-classes
device c

disconnected material entity aggregatec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000891

An object aggregate that is a mereological sum of scattered (i.e. spatially separated) material entities, which do not adhere to one another through chemical bonds or physical junctions but, instead, relate to one another merely on grounds of metric proximity. The material entities are separated from one another through space or through other material entities that do not belong to the group.
Example
a heap of stones, a colony of honeybees, a group of synapses, the trees of a forest, the canopy of a forest, the fish of a shoal, a group of commuters on the subway, the patients in a hospital
has super-classes
object aggregate c
has sub-classes
fiber c

dismantlabilityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010060

A disposition of a product or component to be dismantled under stated technical, safety, time, and damage constraints.
Example
A bolted assembly has higher dismantlability than an inseparably bonded assembly when reuse is intended.
has super-classes
disposition c
has sub-classes
actual dismantlability c

dismantlingc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010055

A process in which a product or component is taken apart so that parts, materials, or information can be recovered, assessed, reused, repaired, remanufactured, recycled, or disposed.
Example
Removing a vehicle door module from an end-of-life vehicle before quality assessment.
has super-classes
process c

dismantling characteristics informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010244

An information content entity that records product or component characteristics relevant to dismantling.
Example
A dismantling characteristics record containing position, quantity, and expected mileage.
has super-classes
information content entity c

dismantling guideline for recyclingc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010056

A plan specification that provides instructions for dismantling a product or component so that materials can be routed to appropriate recycling treatment.
Example
A guideline specifying how to separate a polymer housing from attached metal inserts before recycling.
has super-classes
plan specification c

dismantling instructionsc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010059

A plan specification that describes the actions, order, tools, and constraints for safely and correctly dismantling a product or component.
Example
Stepwise instructions for removing a battery module from a vehicle.
has super-classes
plan specification c

dismantling sequencec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010067

A plan specification that orders the steps required to dismantle a product or component.
Example
Remove cover, disconnect cable, release clips, and lift out module.
has super-classes
plan specification c

dispositionc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000016

(Elucidation) A disposition b is a realizable entity such that if b ceases to exist then its bearer is physically changed & b's realization occurs when and because this bearer is in some special physical circumstances & this realization occurs in virtue of the bearer's physical make-up
Example
An atom of element X has the disposition to decay to an atom of element Y; the cell wall is disposed to transport cellular material through endocytosis and exocytosis; certain people have a predisposition to colon cancer; children are innately disposed to categorize objects in certain ways
has super-classes
realizable entity c
has sub-classes
dismantlability c, function c, material property c, non-destructive dismantlability c, product quality c, recycling availability c, recycling material quality c, refurbishability c, remanufacturability c, reusability c
is in range of
has disposition op
is disjoint with
role c

distributionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010029

A lifecycle stage in which products, components, or materials are transported, stored, or transferred between supply chain actors.
Example
Shipment of remanufactured components from a supplier to a vehicle manufacturer.
has super-classes
lifecycle stage c

distributorc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000015

person or business organization when it purchases products from manufacturers and resells them to wholesalers
is equivalent to
(organization c or person c) and (bearer of op some distributor role c)
has super-classes
agent c

distributor rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000060

role held by a person or business organization when it buys some material products from a manufacturer and resells them to a wholesaler
has super-classes
agent role c

documentc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000310

A collection of information content entities intended to be understood together as a whole
has super-classes
information content entity c
has sub-classes
exploding diagram c, other recycling information c, publication c, weighing slip c

drive typec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010147

A quality of a vehicle that classifies its propulsion architecture or drive configuration.
Example
Battery electric drive, hybrid drive, or combustion engine drive.
has super-classes
quality c

elastic modulusc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000618

represents a material's stiffness, defined as the ratio of stress to strain in the elastic deformation region.
has super-classes
stiffness c
has sub-classes
young's modulus c

electric potentialc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000619

an extensvie quality describing the amount of work needed to move a unit charge from a reference point to a specific location in an electric field.
has super-classes
extensive quality c
is disjoint with
chemical potential c, size c, mass c, energy c, activity (thermodynamic) c, shape c

elongation expansion normalc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010116

A length-related quality or simulation output that represents elongation or expansion normal to a reference direction.
Example
Thermal expansion normal to fiber orientation in a molded composite.
has super-classes
length c

elongation expansion parallelc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010117

A length-related quality or simulation output that represents elongation or expansion parallel to a reference direction.
Example
Thermal expansion parallel to fiber orientation in a molded composite.
has super-classes
length c

emission of radiationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000629

The emission radiation is a process describing the release of energy in the form of electromagnetic waves or particles from a material.
has super-classes
process c

empty weightc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010148

A mass quality that quantifies the weight of a vehicle without load under the stated specification conditions.
Example
The empty weight in kilograms from vehicle documentation.
has super-classes
mass c

end of lifec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010030

A lifecycle stage in which a product or component has reached the end of its intended use and is directed to reuse, remanufacturing, recycling, recovery, or disposal.
Example
Removal of a component from an end-of-life vehicle for circular value assessment.
has super-classes
lifecycle stage c

end timestampc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010228

Expected value datatype: xsd:dateTime; expected unit: not specified.
A date value specification that records the end time of a process step.
Example
The end timestamp of a washing step in a recycling batch process.
has super-classes
date value specification c

energyc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020142

an extensive quality of material entities which manifests as a capacity to perform work (such as causing motion or the interaction of molecules)
has super-classes
extensive quality c
is disjoint with
chemical potential c, electric potential c, size c, mass c, activity (thermodynamic) c, shape c

engineered materialc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000002

We recognize that some of the materials in the subclasses also occur naturally. However, these are not within the scope of our consideration for technical use.
An engineered material is a material that is output of a manufacturing process.
is equivalent to
material c and (is specified output of op some manufacturing process c)
has super-classes
material c
has sub-classes
additive c, filler c, inorganic colorant c, matrix c

entityc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000001

(Elucidation) An entity is anything that exists or has existed or will exist
Example
Julius Caesar; the Second World War; your body mass index; Verdi's Requiem
has sub-classes
continuant c, occurrent c
is in domain of
denoted by op, exists at op, has circular economy information op, has identifier op, has material composition op, has sustainability information op, has usage data op
is in range of
denotes op

environmental conditionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010100

A quality of an environment that is relevant to material behavior, processing, testing, storage, use, or degradation.
Example
A conditioning atmosphere with specified temperature and relative humidity.
has super-classes
quality c

environmental spectrumc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010279

Expected value datatype: xsd:string; expected unit: not specified.
A data item that represents environmental exposure conditions over time or cycles.
Example
A combined exposure profile for humidity, chemical media, radiation, and dust.
has super-classes
data item c

evaluant rolec back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/OBI_0000067

a role that inheres in a material entity that is realized in an assay in which data is generated about the bearer of the evaluant role
has super-classes
role c

evolution of damagec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000635

An evolution of damage is a process representing the progression of material degradation under mechanical, thermal, or chemical stresses.
has super-classes
process c

expected mileagec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010241

Expected value datatype: xsd:integer; expected unit: km.
A quality that quantifies the expected travel distance over which a component can perform its intended function.
Example
Expected mileage of 200000 km for a vehicle component.
has super-classes
quality c

exploding diagramc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010068

A document or figure that depicts a product or assembly with parts spatially separated to show their relative positions and dismantling relationships.
Example
An exploded-view diagram showing screws, clips, housing shells, and subcomponents of a control unit.
has super-classes
document c

extensive qualityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020148

An extensive quality is a quality that inheres in only object or object aggregate or fiat object part or chemical entity and is dependent on the bearers (system-) size.
has super-classes
quality c
has sub-classes
electric potential c, energy c, mass c, shape c, size c
is disjoint with
intensive quality c

fastening techniquec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010066

A plan specification that describes how parts are joined, fixed, or released in an assembly.
Example
A specification that a housing is fastened with Torx screws and snap-fit clips.
has super-classes
plan specification c

fatigue simulationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010298

A simulation process that represents material or component response under repeated cyclic loading.
Example
A fatigue simulation used to estimate component life under cyclic service loads.
has super-classes
simulation process c

fiat object partc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000024

(Elucidation) A fiat object part b is a material entity & such that if b exists then it is continuant part of some object c & demarcated from the remainder of c by one or more fiat surfaces
Example
The upper and lower lobes of the left lung; the dorsal and ventral surfaces of the body; the Western hemisphere of the Earth; the FMA:regional parts of an intact human body
has super-classes
material entity c
has sub-classes
bulk c, corroded region c

fiberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000012

In PMD logic, this is a disconnected aggregate because the individual filaments in a bundle are distinct objects.
A disconnected material entity aggregate composed of elongated filament-like material parts.
Example
Carbon fiber tow, Aramid fibers.
has super-classes
disconnected material entity aggregate c
has sub-classes
glass fiber c

fiber material content mass fractionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000014

Commonly denoted as wt%. PA66-GF25 implies a value of 0.25 or 25%.
A mass proportion that quantifies fiber reinforcement mass relative to total composite material mass.
Example
25% mass fraction in PA66-GF25.
has super-classes
mass proportion c

fiber material content volume fractionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000015

Expected value datatype: xsd:float; expected unit: %.
A volume proportion that quantifies fiber reinforcement volume relative to total composite material volume.
Example
Approximately 14-15% volume fraction corresponds to 25% mass fraction for Glass/PA66.
has super-classes
volume proportion c

file formatc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010295

Expected value datatype: xsd:string; expected unit: not specified.
An information content entity that identifies the format in which a file or simulation card is encoded.
Example
A material-card file format recorded for simulation data exchange.
has super-classes
information content entity c

fillerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010101

The role borne by such a material in a composite is PMD Core filler role.
An engineered material incorporated in another material to occupy volume, modify properties, reduce cost, or contribute reinforcement in a composite or compound.
Example
Glass fibers or mineral particles added to a polymer compound.
has super-classes
engineered material c
has sub-classes
reinforcement c

filler rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020001

Filler is the role of a 'PortionOfDisconnectedMatter' that implies being hosted in a matrix.
has super-classes
role c
is disjoint with
matrix role c

flexural modulusc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000030

Expected value datatype: xsd:float; expected unit: MPa / GPa.
A stiffness that quantifies the ratio of flexural stress to flexural strain.
Example
Flexural modulus of 8500 MPa for PA66-GF30.
has super-classes
stiffness c

flexural strengthc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000031

Expected value datatype: xsd:float; expected unit: MPa / GPa.
A strength that quantifies maximum stress under flexural loading before yielding or rupture.
Example
250 MPa for a high-performance composite.
has super-classes
strength c

flow of electric chargec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000519

is the process of movement of charged particles
has super-classes
process c

formal organizationc back to ToC or Class ToC

IRI: http://www.w3.org/ns/org#FormalOrganization

has super-classes
organization c

functionc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000034

(Elucidation) A function is a disposition that exists in virtue of its bearer's physical make-up & this physical make-up is something the bearer possesses because it came into being either through evolution (in the case of natural biological entities) or through intentional design (in the case of artefacts) in order to realize processes of a certain sort
Example
The function of a hammer to drive in nails; the function of a heart pacemaker to regulate the beating of a heart through electricity
has super-classes
disposition c
has sub-classes
business function c
is in domain of
function of op
is in range of
has function op

functional glassc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0050133

glass that is designed to perform specific roles beyond conventional optical applications
is equivalent to
glass c and (part of op some object c and (has function op some function c))
has super-classes
functional material c, glass c

functional materialc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000654

A functional material F is an engineered material which has the disposition to be used for an object O (O consists of F) and O's function is other/more than mechanical load carrying.
is equivalent to
material c and (part of op some object c and (has function op some function c))
has super-classes
material c
has sub-classes
functional glass c

further contentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010103

A composition data item that records additional material constituents or content fractions not captured by the primary material composition fields.
Example
A data item recording minor additive content in a polymer compound.
has super-classes
data item c

generation of magnetic fieldc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000521

is a process that occurs as a reaction to change of elctric field or movement of charges and produces a magnetic field
has super-classes
process c

generically dependent continuantc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000031

(Elucidation) A generically dependent continuant is an entity that exists in virtue of the fact that there is at least one of what may be multiple copies which is the content or the pattern that multiple copies would share
Example
The pdf file on your laptop; the pdf file that is a copy thereof on my laptop; the sequence of this protein molecule; the sequence that is a copy thereof in that protein molecule; the content that is shared by a string of dots and dashes written on a page and the transmitted Morse code signal; the content of a sentence; an engineering blueprint
has super-classes
continuant c
has sub-classes
information content entity c
is in domain of
is concretized as op
is in range of
concretizes op
has members
1. steel and iron materials ni, 1.1 steels / cast steel / sintered steel ni, 1.1.1 unalloyed, low alloyed ni, 1.1.2 highly alloyed ni, 1.2 cast iron ni, 1.2.1 cast iron with lamellar graphite / tempered cast iron ni, 1.2.2 cast iron with nodular graphite / vermicular cast iron ni, 1.2.3 highly alloyed cast iron ni, 2. light alloys, cast and wrought alloys ni, 2.1 aluminium and aluminium alloys ni, 2.1.1 cast aluminium alloys ni, 2.1.2 wrought aluminium alloys ni, 2.2 magnesium and magnesium alloys ni, 2.2.1 cast magnesium alloys ni, 2.2.2 wrought magnesium alloys ni, 2.3 titanium and titanium alloys ni, 3. nonferrous heavy metals, cast and wrought alloys ni, 3.1 copper ni, 3.2 copper alloys ni, 3.3 zinc alloys ni, 3.4 nickel alloys ni, 3.5 lead ni, 4. special metals ni, 4.1 platinum / rhodium ni, 4.2 other special metals ni, 5. polymer materials ni, 5.1 thermoplastics (filled / unfilled) ni, 5.2 thermoplastic elastomers ni, 5.4 duromers ni, 5.4.1 polyurethane ni, 5.4.2 unsaturated polyester ni, 5.4.3 other duromers ni, 5.5 polymeric compounds ni, 5.5.1 plastics ni, 5.5.2 textiles ni, 6. process polymers ni, 6.1 lacquers ni, 6.2 adhesives, sealants ni, 6.3 underseal ni, 7. other materials and material compounds ni, 7.1 modified organic natural materials ni, 7.2 ceramics / glass ni, 7.3 other compounds ni, 8. electronics / electrics ni, 8.1 electronics ni, 8.2 electrics ni, 9. fuels and auxiliary means ni, 9.1 fuels ni, 9.2 lubricants ni, 9.3 brake fluid ni, 9.4 coolant / other glycols ni, 9.5 refrigerant ni, 9.6 washing water, battery acids ni, 9.7 preservative ni, 9.8 other fuels and auxiliary means ni
is disjoint with
independent continuant c, specifically dependent continuant c, independent continuant c, specifically dependent continuant c

geological processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000110

A natural process that operates within the Earth system to transform, transport, or deform Earth materials, thereby changing Earth structures and landforms
has super-classes
process c

glassc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000661

It is often composed of silica-based compounds.
A glass is an engineered material present as an amorphous solid typically formed by rapid cooling of a melt.
has super-classes
material c
has sub-classes
functional glass c, optical glass c

glass fiberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000013

Used extensively as a reinforcement agent in polymer matrix composites.
A fiber composed primarily of glass.
Example
E-Glass used to reinforce PA66 for automotive pedals.
has super-classes
fiber c

glass transition temperaturec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000026

Below Tg, the amorphous phase is frozen; above Tg, polymer chains have mobility.
A phase boundary temperature at which the amorphous phase of a polymer changes between glassy and rubbery states.
Example
A glass transition temperature of about 50 degC for dry PA66.
has super-classes
phase boundary (realization) c

global asset identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010199

An identifier that globally identifies an asset in a digital twin or data exchange environment.
Example
A global asset identifier for the digital twin of a material card or recycling batch.
has super-classes
identifier c

global location numberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000009

identifer that uniquely identifies a business organization or a geospatial location and complies with GS1 GLN coding scheme
has super-classes
physical location identifier c

grain sizec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020243

an intensive quality epitomizing the average size of the grains of a polycrystal
has super-classes
intensive quality c
has sub-classes
ASTM grainsize c

grain size distributionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020112

An intensive quality describing the lower length scale object aggregate (grains) that is part of the material.
has super-classes
intensive quality c
is disjoint with
ASTM grainsize c, aggregate state c, crystal structure c, defect density c, density c, crystallographic texture c, pressure c, specific surface area c, temperature c, porosity c, composition c, metallic grain structure c

gross massc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010365

A mass of a material entity that includes the mass of its packaging.
Example
The gross mass of one packaged component.
has super-classes
mass c

hardnessc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000773

The hardness is a mechanical property used as a measure of a material's resistance to localized plastic deformation, often tested by indentation or scratch methods.
has super-classes
mechanical property c

heat capacityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000777

The heat capacity is a thermal property describing the amount of heat energy required to raise the temperature of a material by a given amount.
has super-classes
thermal property c
has sub-classes
specific heat capacity c

heat flowc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000520

is a process in which transfer of thermal energy between or within material entities occurs
has super-classes
process c

hexavalent chromium threshold compliancec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010237

Expected value datatype: xsd:boolean; expected unit: not specified.
A data item that records whether hexavalent chromium concentration complies with a stated threshold.
Example
A true value indicating that hexavalent chromium concentration is below the applicable threshold.
has super-classes
data item c

Homo sapiensc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/NCBITaxon_9606

has super-classes
material entity c
has sub-classes
person c

homologation material sharec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010333

Expected value datatype: xsd:double; expected unit: percent.
A mass proportion that quantifies the share of a material used in homologation quota calculation.
Example
A material share reported for a VDA material group in a vehicle homologation record.
has super-classes
mass proportion c

humidityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000032

Relevant for polyamides because moisture uptake changes mechanical properties.
An intensive quality that quantifies water vapor content in air surrounding a material.
Example
50% Relative Humidity (standard conditioning atmosphere).
has super-classes
intensive quality c

humidity absorptionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010040

Expected value datatype: xsd:float; expected unit: %.
A disposition of a material or component to absorb water vapor from a humid environment under specified exposure conditions.
Example
Moisture uptake by a PA66 component during use at 50 percent relative humidity.
has super-classes
material property c

humidity medium service life componentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010265

A chemical service life component limited by humidity or water exposure.
Example
A service life component for exposure to 85 percent relative humidity.
has super-classes
chemical service life component c

identifierc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0020000

An information content entity that is the outcome of a dubbing process and is used to refer to one instance of entity shared by a group of people to refer to that individual entity.
Sep 29, 2016: The current definition has been amended from the previous version: "A proper name is an information content entity that is the outcome of a dubbing process and is used to refer to one instance of entity shared by a group of people to refer to that individual entity." to more accuratly reflect the necessary and sufficient condition on the class. (MB)
is equivalent to
information content entity c and (denotes op some entity c) and (is specified output of op some identifier creating process c)
has super-classes
information content entity c
has sub-classes
CAS number c, VDA standard identifier c, actor number c, batch identifier c, brand c, business partner number c, container type identifier c, global asset identifier c, identifier at manufacturer c, identifier name at manufacturer c, item number c, local identifier c, lot number c, main group identifier c, main group name c, manufacturer name c, manufacturing country code c, material abbreviation c, material composition name c, material designation c, material group c, material identifier c, material name c, material number c, model identifier c, model range c, model range lifecycle c, name at manufacturer c, organization identifier c, part name at manufacturer c, part number c, physical location identifier c, product hierarchy node c, product identifier c, product segment c, sales name c, sub-group identifier c, sub-group name c, transfer identifier c, vehicle model c, vehicle series c, waste code c
is in range of
has identifier op

identifier at manufacturerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000016

Expected value datatype: xsd:string; expected unit: not specified.
An identifier assigned by a manufacturer to a product, component, material grade, or material batch in its own system.
Example
A manufacturer code for a specific polymer grade.
has super-classes
identifier c

identifier creating processc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0020010

A planned process that provides a reference to an individual entity shared by a group of subscribers to refer to that individual entity.
is equivalent to
completely executed planned process c and (has specified output op some identifier c)
has super-classes
completely executed planned process c

identifier name at manufacturerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000017

An identifier that records the manufacturer name, brand name, or trade name used for a material or product.
Example
Zytel or Durethan used as a material trade name.
has super-classes
identifier c

immaterial entityc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000141

b is an immaterial entity =Def b is an independent continuant which is such that there is no time t when it has a material entity as continuant part
Example
As for fiat point, fiat line, fiat surface, site
has super-classes
independent continuant c
has sub-classes
continuant fiat boundary c, site c, spatial region c
is disjoint with
material entity c

impact strengthc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000029

Expected value datatype: xsd:float; expected unit: kJ/m^2.
A strength that quantifies material resistance to fracture under impact loading.
Example
45 kJ/m^2 notched impact strength for a bumper material.
has super-classes
strength c

incident recordc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010269

Expected value datatype: xsd:string; expected unit: not specified.
A data item that records incidents affecting a product or component during use.
Example
A record of overload, crash exposure, overheating, or water ingress.
has super-classes
data item c

independent continuantc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000004

b is an independent continuant =Def b is a continuant & there is no c such that b specifically depends on c or b generically depends on c
Example
An atom; a molecule; an organism; a heart; a chair; the bottom right portion of a human torso; a leg; the interior of your mouth; a spatial region; an orchestra
has super-classes
continuant c
has sub-classes
immaterial entity c, material entity c
is in domain of
has disposition op, has function op, has relational quality op, has role op, located in op
is in range of
located in op, owns op
is disjoint with
specifically dependent continuant c, generically dependent continuant c, specifically dependent continuant c, generically dependent continuant c

information content entityc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000030

A generically dependent continuant that is about some thing.
has super-classes
generically dependent continuant c
has sub-classes
Concept c, Concept Scheme c, actor role type c, agreement c, alternative item group c, approved supplier assignment c, best treatment techniques c, bom position c, chemical characterization c, child process type c, circular economy information c, component identification information c, component information c, component position c, container description c, data item c, datum label c, design feedback information c, directive information entity c, dismantling characteristics information c, document c, file format c, identifier c, local identifier key c, loss type c, manufacturing information c, material class c, material master record c, material source c, materials information c, measurement type c, origin c, part type information c, process information c, process type c, product data c, product footprint c, recycling information c, routing operation record c, selected r-strategy rationale c, simulation card c, simulation type c, sustainability information c, test requirements c, thermal characterization c, uncertainty c, usage data c, value specification c, vehicle information c
is in domain of
denotes op, has value specification op, is about op
is in range of
denoted by op
has members
1. steel and iron materials ni, 1.1 steels / cast steel / sintered steel ni, 1.1.1 unalloyed, low alloyed ni, 1.1.2 highly alloyed ni, 1.2 cast iron ni, 1.2.1 cast iron with lamellar graphite / tempered cast iron ni, 1.2.2 cast iron with nodular graphite / vermicular cast iron ni, 1.2.3 highly alloyed cast iron ni, 2. light alloys, cast and wrought alloys ni, 2.1 aluminium and aluminium alloys ni, 2.1.1 cast aluminium alloys ni, 2.1.2 wrought aluminium alloys ni, 2.2 magnesium and magnesium alloys ni, 2.2.1 cast magnesium alloys ni, 2.2.2 wrought magnesium alloys ni, 2.3 titanium and titanium alloys ni, 3. nonferrous heavy metals, cast and wrought alloys ni, 3.1 copper ni, 3.2 copper alloys ni, 3.3 zinc alloys ni, 3.4 nickel alloys ni, 3.5 lead ni, 4. special metals ni, 4.1 platinum / rhodium ni, 4.2 other special metals ni, 5. polymer materials ni, 5.1 thermoplastics (filled / unfilled) ni, 5.2 thermoplastic elastomers ni, 5.3 elastomers / elastomeric compounds ni, 5.4 duromers ni, 5.4.1 polyurethane ni, 5.4.2 unsaturated polyester ni, 5.4.3 other duromers ni, 5.5 polymeric compounds ni, 5.5.1 plastics ni, 5.5.2 textiles ni, 6. process polymers ni, 6.1 lacquers ni, 6.2 adhesives, sealants ni, 6.3 underseal ni, 7. other materials and material compounds ni, 7.1 modified organic natural materials ni, 7.2 ceramics / glass ni, 7.3 other compounds ni, 8. electronics / electrics ni, 8.1 electronics ni, 8.2 electrics ni, 9. fuels and auxiliary means ni, 9.1 fuels ni, 9.2 lubricants ni, 9.3 brake fluid ni, 9.4 coolant / other glycols ni, 9.5 refrigerant ni, 9.6 washing water, battery acids ni, 9.7 preservative ni, 9.8 other fuels and auxiliary means ni, VDA 231-106 material classification ni

injection moldingc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0200002

A primary shaping from the plastic state process in which plastic granules are plasticised in an injection unit and the melt is injected under high pressure into a closed mold cavity, where it cools and solidifies to the final part shape.
Example
Injection molding of polypropylene housings.
has super-classes
primary shaping from the plastic state c

injection molding machinec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000794

An injection molding machine is a device used to produce plastic parts by injecting molten plastic into molds under high pressure.
has super-classes
device c

injection molding simulationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010109

A manufacturing simulation that represents an injection molding process, including relevant material, mold, filling, packing, cooling, or warpage behavior.
Example
A mold-filling simulation for a PA66-GF25 housing.
has super-classes
manufacturing simulation c

inorganic colorantc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000005

Inorganic colorants (pigments) are generally insoluble and provide opacity and high heat stability.
An engineered material used as an inorganic colorant in a polymer, coating, or other material system.
Example
Titanium dioxide (white) used in car paints.
has super-classes
engineered material c
is disjoint with
organic colorant c

input net massc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010229

Expected value datatype: xsd:float; expected unit: kg.
A mass quality that quantifies the net mass entering a process step.
Example
Input net mass of 10.0 kg for a recycling process step.
has super-classes
mass c

intensive qualityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020131

An intensive quality is a quality that inheres in only portion of matter and thus is independent of the bearers (system-) size.
has super-classes
quality c
has sub-classes
aggregate state c, chemical potential c, color c, composition c, crystal structure c, crystallographic texture c, defect density c, density c, grain size c, grain size distribution c, humidity c, metallic grain structure c, order scale c, porosity c, pressure c, specific surface area c, specific volume c, temperature c, viscosity c
is disjoint with
extensive quality c

item numberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010335

An identifier that records the item to which a material entry belongs in a composition or homologation structure.
Example
An item number for a component node in a vehicle material composition.
has super-classes
identifier c

lead threshold compliancec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010234

Expected value datatype: xsd:boolean; expected unit: not specified.
A data item that records whether lead concentration complies with a stated threshold.
Example
A true value indicating that lead concentration is below the applicable threshold.
has super-classes
data item c

lengthc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0040001

Length is a size that describes the spatial extent of its bearer in one dimension.
Length is a one dimensional size.
has super-classes
size c
has sub-classes
elongation expansion normal c, elongation expansion parallel c, length of fibers c, physical dimension c

length of fibersc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010118

A length quality that quantifies the characteristic or measured length of fibers in a fiber-containing material.
Example
Mean glass fiber length after injection molding of PA66-GF25.
has super-classes
length c

lifecyclec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010025

A process chain that comprises the stages through which a product or material passes from raw material acquisition through production, use, and end-of-life treatment.
Example
The lifecycle of an automotive control unit from material extraction to recycling.
has super-classes
process chain c

lifecycle stagec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010026

A process that is a distinguishable part of a product or material lifecycle.
Example
Main product production as a lifecycle stage for an automotive component.
has super-classes
process c
has sub-classes
distribution c, end of life c, main product production c, raw material acquisition c, recycling lifecycle stage c

loadc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000026

collection of material entities which share the same transportation and transfer history
is equivalent to
material entity c and (bearer of op some load role c)
has super-classes
material entity c

load rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000082

traceable resource unit role held by a number of material entities that have been transferred or transported together
has super-classes
traceable resource unit role c

load spectrumc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010270

A data item that represents the distribution of loads experienced by a component over time or cycles.
Example
A load collective describing cyclic forces experienced by a suspension component.
has super-classes
data item c
has sub-classes
mechanical load spectrum at fleet level c, mechanical load spectrum at instance level c

local identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010177

An identifier that identifies an entity within a stated local system, organization, or dataspace.
Example
A local batch number used inside a manufacturer's production system.
has super-classes
identifier c
has sub-classes
local identifier value c

local identifier keyc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010178

An information content entity that names the local identifier scheme or field in which an identifier value is given.
Example
A key such as plant batch number or supplier lot number in a key-value identifier list.
has super-classes
information content entity c

local identifier valuec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010179

Expected value datatype: xsd:string; expected unit: not specified.
An identifier value used within a stated local identifier scheme.
Example
The value 2024-11-A in a supplier lot identifier.
has super-classes
local identifier c

location rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000085

role held by a geospatial site when it is the location of some material entity at some time or the site of some process
has super-classes
role c
has sub-classes
supply chain node role c

logistics servicec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000113

commercial service that consists of at least one transport process, packaging process, freight forwarding, or storage process
has super-classes
commercial service c
has sub-classes
transportation service c

logistics service provider rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000065

service provider role that is held by a business organization or person when it provides a logistics service
has super-classes
service provider role c
has sub-classes
transportation service provider role c

loss typec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010223

An information content entity that classifies the cause or form of material loss in a process.
Example
Abrasion or contamination recorded as the loss type for a recycling process step.
has super-classes
information content entity c

lotc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020138

A lot is an object aggregate whose parts are output of the same production process.
has super-classes
object aggregate c
has sub-classes
batch c

lot numberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000005

identifier that uniquely denotes a particular quantity of material entities that have shared production or transformation history
is equivalent to
identifier c and (denotes op some lot c)
has super-classes
identifier c

lot rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000080

traceable resource unit role held by material entities that have a shared production or transformation history
has super-classes
traceable resource unit role c

main group identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010072

An identifier that records the code or number of a material main group in a material classification scheme.
Example
The VDA 231-106 main group code '5'.
has super-classes
identifier c

main group namec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010071

An identifier that records the name of a material main group in a material classification scheme.
Example
The VDA 231-106 main group name 'polymer materials'.
has super-classes
identifier c

main product productionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010028

A lifecycle stage in which raw materials, intermediate products, or components are transformed into the main product.
Example
Injection molding and assembly steps used to produce an automotive housing.
has super-classes
lifecycle stage c

manufacturerc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/OBI_0000835

A person or organization that has a manufacturer role.
is equivalent to
(Homo sapiens c or organization c) and (has role op some manufacturer role c)
has super-classes
material entity c
has sub-classes
original equipment manufacturer c

manufacturer namec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010090

An identifier that records the name by which a manufacturer is referred to in a data exchange, contract, product record, or manufacturer system.
Example
The manufacturer name 'Schaeffler' in a supplier record.
has super-classes
identifier c

manufacturer part numberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010183

Expected value datatype: xsd:string; expected unit: not specified.
A part number assigned by the manufacturer to a designed part type.
Example
A manufacturer's part number for a steering control unit housing.
has super-classes
part number c

manufacturer plant sitec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010091

A site at which a manufacturer carries out production, assembly, treatment, storage, or related industrial operations.
Example
A specific plant where a material batch or component was produced.
has super-classes
site c

manufacturer rolec back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/OBI_0000571

Manufacturer role is a role which inheres in a person or organization and which is realized by a manufacturing process.
has super-classes
role c

manufacturing country codec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010181

Expected value datatype: xsd:string; expected code scheme: ISO 3166-1 alpha-2 or alpha-3.
An identifier that records the country in which a part, product, material, or batch was manufactured.
Example
"DE" as the manufacturing country code for a part manufactured in Germany.
has super-classes
identifier c

manufacturing informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010180

An information content entity that records production-related data about a batch, part, product, or material.
Example
Manufacturing date and manufacturing country recorded for a produced batch.
has super-classes
information content entity c

manufacturing processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000833

Manufacturing processes alternate qualities of materials, i.e., a value specification of some quality of a material entity, which is a specified input to the process, cannot be the same as a value specification of the same quality of another material entity, which is a specified output of the process. Unfortunately it is not possible to write down such axiom based on OWL. Semi-working solution are the temporally qualified continuants + SPARQL constrains.
A planned process that is driven by the primary intent to transform objects A manufacturing process is always a transformative process.
is equivalent to
completely executed planned process c and (has specified input op some object aggregate c or object c) and (has specified output op some object aggregate c or object c)
has super-classes
completely executed planned process c
has sub-classes
assembling process c, assembly process c, primary shaping c, routing operation c

manufacturing servicec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000118

commercial service that consists of at least one manufacturing process
is equivalent to
commercial service c and (has occurrent part op some manufacturing process c)
has super-classes
commercial service c

manufacturing simulationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010108

A simulation process that represents a manufacturing process and its material, process, geometry, or performance consequences.
Example
A simulation of an injection molding process used to predict filling and cooling behavior.
has super-classes
simulation process c
has sub-classes
injection molding simulation c

manufacturing simulation parameterc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010296

A value specification that provides an input, calibration, or output parameter for a manufacturing simulation.
Example
Specific volume or viscosity data used as a manufacturing simulation parameter.
has super-classes
value specification c

manufacturing supply chain systemc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000039

supply chain system that is formed to manufacture one or more products
is equivalent to
supply chain system c and (participates in op some supply chain process c and (has output op some material product c))
has super-classes
supply chain system c

massc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020133

Mass is relevant in such processes as gravitation, acceleration, etc.
Mass is fundamental extensive quality.
has super-classes
extensive quality c
has sub-classes
container mass c, empty weight c, gross mass c, input net mass c, material mass c, net mass c, output net mass c, process loss c
is disjoint with
chemical potential c, electric potential c, size c, energy c, activity (thermodynamic) c, shape c

mass fractionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010331

Expected value datatype: xsd:float; expected unit: percent.
A mass proportion that quantifies a constituent mass relative to the total mass of the containing material, part, or product.
Example
The mass fraction of glass fibers in a PA66-GF25 compound.
has super-classes
mass proportion c

mass proportionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020102

Mass proportion is a proportion which quantifies the mass of the part relative to the mass of the whole.
has super-classes
proportion c
has sub-classes
ash content c, automotive material share c, consumer share c, fiber material content mass fraction c, homologation material share c, mass fraction c, material source share c, non-automotive material share c, post-consumer material share c, pre-consumer material share c, reutilization material share c, water content c
is disjoint with
molar proportion c, volume proportion c

materialc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000000

Instances of Portions Of Matter whose shape is relevant for their dispostion to participate in a manufacturing process may be (subclasses of) objects that bear a 'blank role' in the context of the manufacturing process.
A material is a portion of matter that may participate in some manufacturing process and whose shape is not relevant for its participation in the manufacturing process.
has super-classes
portion of matter c
has sub-classes
bio-based material c, biological material c, engineered material c, functional material c, glass c, material for homologation c, metal c, natural organic material c, polymer c, primary material c, recycled material c, secondary material c

material abbreviationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010107

An identifier that records a short material designation or abbreviation used for a material or material family.
Example
PA66-GF25 as an abbreviated designation for a glass-fiber-reinforced polyamide 66 compound.
has super-classes
identifier c

material batch identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000020

Expected value datatype: xsd:string; expected unit: not specified.
A batch identifier assigned to a material batch for traceability.
Example
Batch 2023-10-A-X55.
has super-classes
batch identifier c

material cardc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010291

A simulation card that specifies material data for a simulation model.
Example
A polymer material card calibrated for injection molding simulation.
has super-classes
simulation card c

material classc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010106

Expected value datatype: xsd:string; expected unit: not specified.
An information content entity that assigns a material, component, or product to a material category in a stated classification scheme.
Example
A VDA 231-106 material class assignment for polymer materials.
has super-classes
information content entity c

material componentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000028

material entity which has the material component role
is equivalent to
material entity c and (bearer of op some material component role c)
has super-classes
material entity c

material component rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000105

role held by a material entity when it is a proper part of another material entity or is planned to be a proper part of another material entity
has super-classes
role c

material compositionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010005

A composition that describes the material constituents and constituent amounts of a product, component, material batch, or material grade.
Example
A composition stating that PA66-GF25 contains a PA66 matrix and nominally 25 percent glass fiber by mass.
has super-classes
composition c

material composition namec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010353

An identifier that records the name of a constituent or material entry in a material composition.
Example
The constituent name glass fiber in a composition table.
has super-classes
identifier c

material designationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000018

Expected value datatype: xsd:string; expected unit: not specified.
An identifier that records a standard or supplier designation for a material composition.
Example
PA66-GF25
has super-classes
identifier c

material entityc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000040

An independent continuant that is spatially extended whose identity is independent of that of other entities and can be maintained through time.
(Elucidation) A material entity is an independent continuant has some portion of matter as continuant part
Example
A human being; the undetached arm of a human being; an aggregate of human beings
has super-classes
independent continuant c
has sub-classes
Homo sapiens c, agent c, chemical entity c, fiat object part c, load c, manufacturer c, material component c, material product c, material resource c, object c, object aggregate c, organization c, portion of matter c, raw material c, shipment c
is in range of
occurs in op
is disjoint with
immaterial entity c

material for homologationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010332

A material entity represented in homologation data for calculating recycling or recovery quotas.
Example
A VDA-classified material entry used in vehicle recycling quota calculation.
has super-classes
material c

material formatc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010339

A quality of a material that classifies the form in which the material is provided, handled, or processed.
Example
Pellets, flakes, powder, sheet, or compound recorded as a material format.
has super-classes
quality c

material groupc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010363

Expected value datatype: xsd:string.
An identifier that denotes the material group, or commodity class, to which a material belongs.
Example
A material group code grouping metal stamping parts.
has super-classes
identifier c

material identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000019

Expected value datatype: xsd:string; expected unit: not specified.
An identifier assigned to a material entity, material batch, material grade, or material data record.
Example
A material twin identifier used in data exchange.
has super-classes
identifier c

material location change processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000140

planned process that results in a material entity moving from one physical location to another
has super-classes
process c
has sub-classes
transport process c

material massc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010330

Expected value datatype: xsd:float; expected unit: kg.
A mass quality that quantifies the amount of material in a part, batch, or composition entry.
Example
The mass of a polymer material fraction in a vehicle composition record.
has super-classes
mass c

material master recordc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010360

An information content entity that is about a material at a plant and records its type, status, classification, base quantity, and weights.
Example
The plant 1001 master record of a steering component.
has super-classes
information content entity c

material namec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010347

Expected value datatype: xsd:string; expected unit: not specified.
An identifier that records the name used for a material in a stated organization, standard, or data exchange.
Example
Ultramid used as a material name in a material data record.
has super-classes
identifier c

material numberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010336

An identifier that records the material number in a stated material standard or classification scheme.
Example
A material number listed in a VDA material classification record.
has super-classes
identifier c

material physical statec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010338

Expected value datatype: xsd:string; expected unit: not specified.
A quality of a material that classifies its state as solid, liquid, gas, powder, granulate, or another stated form.
Example
Granulate recorded as the physical state of a polymer feedstock.
has super-classes
quality c

material productc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000029

material entity which has the material product role
is equivalent to
material entity c and (bearer of op some material product role c)
has super-classes
material entity c

material product rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000078

role held by a material entity that is intended to be sold, or has been bought, or has been supplied
has super-classes
role c

material propertyc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000005

A property is a material trait in terms of the kind and magnitude of response to a specific imposed stimulus. Generally, definitions of properties are made independent of material shape and size. (Callister, W.D., Rethwisch, D.G., Materials Science and Engineering, Wiley, 2014) Technical materials are complex aggregates. Many properties that are determined for those aggregates are intrinsically associated with the methodologies employed in the measurement process. This is in contrast to typical 'physical' properties, which like e.g. mass that can be determined to high accuracy independently of the measurement process. As a consequence, material properties in the ontology are differeciated according to their measurement method, e.g. Brinell hardness and Vickers hardness are different types of indentation hardness rather than different measures/quantification (GDC) of the materials property 'indentation hardness'. The 'unit idenifieres' of such properties (e.g. "HV1", "HV10", "HBW") are strictly speaking not units but rather references to the measurement methodology used to determine a numeric value that quantifies the property. Extensive properties that depend on the object being tested rather than on the portion of matter are (extensive) object- or system-properties.
a disposition of a portion of matter that is realized in a compatible process and whose realization is grounded in the portions intensive qualities
has super-classes
disposition c
has sub-classes
humidity absorption c, mechanical property c, optical property c, physical property c, stiffness c, thermal property c, water absorption c

material reacting processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0025009

material reacting process has always energy minimization as a driving force.
Material reacting process is a process which occurs in a portion of matter due to some of its disposition or behavioral material property which has realization in some stimulating process. Both the material reacting process and stimulating process must be occurent parts of a planned process, if the planned process takes place.
is equivalent to
process c and (occurs in op some portion of matter c) and (in response to op some (disposition c or material property c) and (has realization op some stimulating process c))
has super-classes
process c
is disjoint with
planned process c

material resourcec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000030

material entity which has the material resource role
is equivalent to
material entity c and (bearer of op some material resource role c)
has super-classes
material entity c

material resource rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000106

role played by a material entity that consists in it being available to a person or group of agents or engineered system
has super-classes
role c

material sourcec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010249

An information content entity that records the source category or provenance of material used in a recycling or production context.
Example
Automotive post-consumer material recorded as a material source.
has super-classes
information content entity c

material source sharec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010123

A mass proportion that quantifies the share of material from a stated source category, such as primary, secondary, pre-consumer, post-consumer, automotive, or non-automotive sources.
Example
A material source share for secondary automotive recycled content.
has super-classes
mass proportion c

material standardc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010337

A plan specification that defines material classification, designation, composition, or testing requirements.
Example
A VDA material standard used to classify materials for homologation.
has super-classes
plan specification c

material statusc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010340

A quality of a material that records its state in a process, supply, use, or recycling context.
Example
Virgin, recycled, contaminated, dried, or approved as a material status.
has super-classes
quality c

materials informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010004

An information content entity that specifies material-related characteristics of a product, component, material batch, or material grade.
Example
A data record listing material designation, density, fiber content, and recycled content for an automotive component.
has super-classes
information content entity c

matrixc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010002

The corresponding realizable entity is PMD Core matrix role; this class is used for material entities considered as the continuous phase of a composite.
An engineered material that forms the continuous phase of a composite material and binds or embeds reinforcement, filler, or dispersed material constituents.
Example
The PA66 phase in a PA66-GF25 composite.
has super-classes
engineered material c

matrix rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000845

Matrix is the role of a 'PortionOfConnectedMatter' that implies to host the Filler.
has super-classes
role c
is disjoint with
filler role c

maximum melt temperaturec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0030001

Expected value datatype: xsd:float; expected unit: degC.
A melt temperature that specifies the upper allowed or observed temperature of input melt in a manufacturing process.
Example
A maximum melt temperature of 290 degC in an injection molding process window.
has super-classes
melt temperature c
is disjoint with
minimum melt temperature c

maximum mold temperaturec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0030004

Expected value datatype: xsd:float; expected unit: degC.
A mold temperature that specifies the upper allowed or observed temperature of a mold during a manufacturing process.
Example
A maximum mold temperature of 100 degC in an injection molding process window.
has super-classes
mold temperature c
is disjoint with
minimum mold temperature c

measurement datumc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000109

A measurement datum is an information content entity that is a recording of the output of a measurement such as produced by a device.
has super-classes
data item c
is in domain of
is quality measurement of op

measurement timestampc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010226

Expected value datatype: xsd:dateTime; expected unit: not specified.
A date value specification that records the time at which a measurement was made.
Example
2024-01-01T14:23:00+01:00 recorded as a measurement timestamp.
has super-classes
date value specification c

measurement typec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010225

An information content entity that classifies the measurement method or instrument used to obtain a value.
Example
Material scale recorded as the measurement type for a mass determination.
has super-classes
information content entity c

measurement unit labelc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000003

A measurement unit label is as a label that is part of a scalar measurement datum and denotes a unit of measure.
has super-classes
datum label c
is in range of
has measurement unit label op

mechanical load amplitude at fleet levelc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010274

Expected value datatype: xsd:float; expected unit: N.
A quality that quantifies representative cyclic mechanical load amplitude across a fleet.
Example
A 380 N representative cyclic force amplitude across a vehicle fleet.
has super-classes
quality c

mechanical load amplitude at instance levelc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010273

Expected value datatype: xsd:float; expected unit: N.
A quality that quantifies cyclic mechanical load amplitude experienced by one component or product.
Example
A 450 N peak cyclic force amplitude recorded for one component during operation.
has super-classes
quality c

mechanical load cycles at fleet levelc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010276

Expected value datatype: xsd:nonNegativeInteger; expected unit: cycle.
A quality that quantifies the number or distribution of mechanical load cycles across a fleet.
Example
1200000 load cycles derived from aggregated fleet operating data.
has super-classes
quality c

mechanical load cycles at instance levelc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010275

Expected value datatype: xsd:nonNegativeInteger; expected unit: cycle.
A quality that quantifies the number of mechanical load cycles experienced by one component or product.
Example
250000 load cycles counted for one component during operation.
has super-classes
quality c

mechanical load spectrum at fleet levelc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010272

A load spectrum that aggregates mechanical loads experienced by a fleet of components or products.
Example
An aggregated load profile calculated from all units in a fleet.
has super-classes
load spectrum c

mechanical load spectrum at instance levelc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010271

A load spectrum that records mechanical loads experienced by one individual component or product.
Example
The load profile measured for one vehicle component during operation.
has super-classes
load spectrum c

mechanical processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000522

is a process in which forces, moments, or imposed displacements to objects or object aggregates occur and/or the equivalent (stresses, strains) to materials or portions of matter
has super-classes
process c

mechanical propertyc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000848

The axiom that mechanical property has realization some application of mechanical load treats only conventional materials and not such effects as magnetostriction etc.
A mechanical property is a material property which is a characteristic of material M. Mechanical property has realization in a stimulating process (in most cases, application of mechanical load), and the stimulating process is an occurent part of another process, in which an object O that is an instance of M participates.
has super-classes
material property c
has sub-classes
hardness c, quasistatic strain normal c, quasistatic strain parallel c, strain at break c, strength c

mechanical recyclingc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010220

A recycling process that recovers material through mechanical operations without intentional chemical depolymerization.
Example
Sorting, shredding, washing, and regranulating polymer parts.
has super-classes
recycling c

mechanical service life componentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010261

A service life component limited by mechanical loading conditions.
Example
A 12000 h mechanical service life component under a stated cyclic load spectrum.
has super-classes
service life c

melt temperaturec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0030000

Expected value datatype: xsd:float; expected unit: degC.
A temperature quality that inheres in polymer melt material at a specified point or interval in a manufacturing process.
Example
A melt temperature of 280 degC specified for processing PA66-GF25.
has super-classes
temperature c
has sub-classes
maximum melt temperature c, minimum melt temperature c

melting pointc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000851

The melting point is a state of matter boundary realized by transition form the solid state to the liquid state (or vice versa).
has super-classes
state of matter boundary c
has sub-classes
melting temperature c

melting temperaturec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010349

Expected value datatype: xsd:float; expected unit: degC.
A melting point that is represented as a temperature value for a material under stated conditions.
Example
A melting temperature of 223 degC measured according to ISO 11357.
has super-classes
melting point c

mercury threshold compliancec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010235

Expected value datatype: xsd:boolean; expected unit: not specified.
A data item that records whether mercury concentration complies with a stated threshold.
Example
A true value indicating that mercury concentration is below the applicable threshold.
has super-classes
data item c

metalc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000852

A metal is an engineered material representing a class of materials characterized by high electrical and thermal conductivity, ductility, and metallic bonding.
has super-classes
material c
has sub-classes
restricted heavy metals c

metal atomc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/CHEBI_33521

An atom of an element that exhibits typical metallic properties, being typically shiny, with high electrical and thermal conductivity.
has super-classes
atom c

metallic bondc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0050002

A metallic bond is a bond that forms between metal atoms, where electrons are shared in a "sea" of electrons that move freely around the metal ions. This type of bonding gives metals their characteristic properties such as conductivity and malleability.
has super-classes
bond c

metallic grain structurec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0025003

ferrite, austenite, martensite, etc.
intensive quality epitomizing the distinct phases in the microscopic structure of a metallic material.
is equivalent to
specified by value op exactly 1 metallic grain structures c
has super-classes
intensive quality c
is disjoint with
ASTM grainsize c, aggregate state c, crystal structure c, defect density c, density c, crystallographic texture c, pressure c, specific surface area c, temperature c, porosity c, grain size distribution c, composition c

metallic grain structuresc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020023

The metallic grain structures is a categorical value specification that specifies value of the metallic grain structure quality. It describes the morphology of polycrystalline metallic materials. Polycrystalline metallic materials will typically form their grain structures as one of those categories or a transition or mixture state of those.
is equivalent to
{ bainite ni , austenite ni , ferrite ni , ledeburite ni , pearlite ni , widmanstatten structure ni , martensite ni }
has super-classes
categorical value specification c

minimum melt temperaturec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0030002

Expected value datatype: xsd:float; expected unit: degC.
A melt temperature that specifies the lower allowed or observed temperature of input melt in a manufacturing process.
Example
A minimum melt temperature of 270 degC in an injection molding process window.
has super-classes
melt temperature c
is disjoint with
maximum melt temperature c

minimum mold temperaturec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0030005

Expected value datatype: xsd:float; expected unit: degC.
A mold temperature that specifies the lower allowed or observed temperature of a mold during a manufacturing process.
Example
A minimum mold temperature of 80 degC in an injection molding process window.
has super-classes
mold temperature c
is disjoint with
maximum mold temperature c

model identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010160

An identifier assigned by an original equipment manufacturer to a vehicle model, vehicle project, or model variant.
Example
An original equipment manufacturer project code used to identify a vehicle model in product data.
has super-classes
identifier c

model rangec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010186

An identifier that records a vehicle sales or platform range used to group related model variants.
Example
A model range name used in a vehicle product data aspect.
has super-classes
identifier c

model range lifecyclec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010188

An identifier that records the lifecycle state or generation of a vehicle model range.
Example
A lifecycle code for a vehicle series used in product data exchange.
has super-classes
identifier c

molar proportionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020103

Molar proportion is the proportion which quantifies the entities count of the part in relation to the entities count of the whole.
Example
The molar ratio of hydrogen gas H2 molecules to water H2O molecules is 1/1 in the oxyhydrogen reaction. The molar ratio of oxygen molecules O2 to water molecules is 2/1.
The molar ratio of carbon dioxide to average atmosphere air is 420 ppm as of 2022 AD.
has super-classes
proportion c
is disjoint with
mass proportion c, volume proportion c

mold temperaturec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0030003

Expected value datatype: xsd:float; expected unit: degC.
A temperature quality that inheres in a mold during a manufacturing process.
Example
A mold temperature of 90 degC specified for processing a glass-fiber-reinforced polyamide.
has super-classes
temperature c
has sub-classes
maximum mold temperature c, minimum mold temperature c

mouldc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000075

A device consisting of a hollowed-out cavity that shapes fluid or plastic material into a specific form through the process of solidification or cooling.
has super-classes
device c

mounting point integrityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010081

A quality of a product or component indicating whether its mounting points, clips, tabs, or attachment features are intact and functional.
Example
A bumper bracket with all mounting tabs undamaged.
has super-classes
quality c

name at manufacturerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010165

Expected value datatype: xsd:string; expected unit: not specified.
An identifier or designation by which a manufacturer names a material grade, product line, component, or product in its own records or commercial communication.
Example
A manufacturer trade name such as Ultradur, Zytel, or Grilamid.
has super-classes
identifier c

natural organic materialc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000868

Natural organic materials are materials derived from natural biological sources, primarily composed of carbon-based compounds.
is equivalent to
material c and (has quality op some organic composition c) and (output of op some biological process c or geological process c)
has super-classes
material c
has sub-classes
organic colorant c

net massc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010366

A mass of a material entity that excludes the mass of its packaging.
Example
The net mass of one unpackaged component.
has super-classes
mass c

new production carbon footprintc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010036

Expected value datatype: xsd:float; expected unit: kg CO2e.
A product carbon footprint that specifies greenhouse gas emissions for a new production scenario.
Example
24 kg CO2e attributed to manufacturing one replacement component from primary material.
has super-classes
product carbon footprint c

non-automotive material sharec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010126

A mass proportion that quantifies the share of material content originating from non-automotive sources.
Example
The fraction of recycled polymer sourced from consumer packaging rather than vehicle components.
has super-classes
mass proportion c

non-destructive dismantlabilityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010052

A disposition of a product or component to be dismantled without destroying the product, component, or material portions that are intended for later use.
Example
A clipped interior trim part that can be removed intact for reuse.
has super-classes
disposition c

normal parameter temperaturec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010303

Expected value datatype: xsd:float; expected unit: K.
A structural simulation parameter that specifies temperature for behavior normal to a reference direction.
Example
Temperature parameter normal to fiber orientation in a material card.
has super-classes
structural simulation parameter c
has sub-classes
normal quasistatic temperature parameter c

normal quasistatic temperature parameterc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010305

Expected value datatype: xsd:float; expected unit: K.
A structural simulation parameter that specifies the test temperature for quasistatic behavior normal to a reference direction.
Example
Temperature used for a normal-direction ISO 527 stress-strain curve.
has super-classes
normal parameter temperature c

objectc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000030

(Elucidation) An object is a material entity which manifests causal unity & is of a type instances of which are maximal relative to the sort of causal unity manifested
Example
An organism; a fish tank; a planet; a laptop; a valve; a block of marble; an ice cube
has super-classes
material entity c
has sub-classes
crystal c, device c, piece of transport equipment c

object aggregatec back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000027

(Elucidation) An object aggregate is a material entity consisting exactly of a plurality (≥1) of objects as member parts which together form a unit
Example
The aggregate of the musicians in a symphony orchestra and their instruments; the aggregate of bearings in a constant velocity axle joint; the nitrogen atoms in the atmosphere; a collection of cells in a blood biobank
has super-classes
material entity c
has sub-classes
connected material entity aggregate c, disconnected material entity aggregate c, lot c, supply chain system c, work center c

objective specificationc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000005

A directive information entity that describes an intended process endpoint. When part of a plan specification the concretization is realized in a planned process in which the bearer tries to effect the world so that the process endpoint is achieved.
has super-classes
directive information entity c
has sub-classes
supply chain objective specification c
is in range of
achieves_planned_objective op

obsolete planned processc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/OBI_0000011

A process that realizes a plan which is the concretization of a plan specification.
Deprecated upstream class retained through import closure; use COB_0000035 instead.
Is deprecated
true
has super-classes
completely executed planned process c

occurrentc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000003

(Elucidation) An occurrent is an entity that unfolds itself in time or it is the start or end of such an entity or it is a temporal or spatiotemporal region
Example
As for process, history, process boundary, spatiotemporal region, zero-dimensional temporal region, one-dimensional temporal region, temporal interval, temporal instant.
has super-classes
entity c
has sub-classes
process c, process attribute c, process boundary c, spatiotemporal region c, temporal region c
is in domain of
has occurrent part op, has participant op, occurrent part of op
is in range of
has occurrent part op, occurrent part of op, participates in op
is disjoint with
continuant c

one-dimensional temporal regionc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000038

(Elucidation) A one-dimensional temporal region is a temporal region that is a whole that has a temporal interval and zero or more temporal intervals and temporal instants as parts
Example
The temporal region during which a process occurs
has super-classes
temporal region c
has sub-classes
temporal interval c
is disjoint with
zero-dimensional temporal region c

optical glassc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0050118

glass manufactured for optical components
Example
e.g., lenses, prisms, mirrors
is equivalent to
glass c and (has characteristic op some optical property c)
has super-classes
glass c

optical propertyc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000877

An optical property is a material property representing the characteristics that describe how a material interacts with light, including reflection, refraction, and absorption.
has super-classes
material property c
has sub-classes
refraction (optical) c

order scalec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020220

characteristic length over which structural correlations persist in a material
is equivalent to
specified by value op exactly 1 order scale value c
has super-classes
intensive quality c

order scale valuec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020216

possible values of characteristic length over which structural correlations persist in a material
is equivalent to
{ short range order ni , medium range order ni , long range order ni , no range order ni }
has super-classes
categorical value specification c

organic colorantc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000004

Organic colorants (dyes) offer high color strength and brightness but may have lower thermal stability than pigments.
A natural organic material used as a colorant in a polymer, coating, or other material system.
Example
Azo dyes used in interior textile coloring.
has super-classes
natural organic material c
is disjoint with
inorganic colorant c

organic compositionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0010026

A composition characterized by a primary molecular structure of carbon atoms covalently bonded to hydrogen (C-H bonds), typically forming linear, branched, or networked chains.
has super-classes
composition c

organizationc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/OBI_0000245

An entity that can bear roles, has members, and has a set of organization rules. Members of organizations are either organizations themselves or individual people. Members can bear specific organization member roles that are determined in the organization rules. The organization rules also determine how decisions are made on behalf of the organization by the organization members.
has super-classes
material entity c
has sub-classes
business organization c, formal organization c
is in range of
acts on behalf of op

organization identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000006

identifier that identifies an organization
is equivalent to
identifier c and (denotes op some organization c)
has super-classes
identifier c

originc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010120

An information content entity that records the source category, provenance, or supply-chain origin of a material.
Example
An origin statement that a polymer fraction is post-consumer automotive recycled material.
has super-classes
information content entity c

original equipment manufacturerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010162

A manufacturer that designs or produces the original vehicle, component, or system for which circular economy data is recorded.
Example
A vehicle manufacturer recorded as the original equipment manufacturer for a vehicle series.
has super-classes
manufacturer c

other recycling informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010124

A document or information content entity that provides additional evidence, provenance, compliance, or quality information about material origin or recycling.
Example
A supplier declaration documenting recycled material origin and quality.
has super-classes
document c

output net massc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010230

Expected value datatype: xsd:float; expected unit: kg.
A mass quality that quantifies the net mass leaving a process step.
Example
Output net mass of 9.5 kg after a recycling process step.
has super-classes
mass c

overall material compositionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010187

A composition that summarizes material groups and amounts at the level of a whole product or vehicle.
Example
Overall material composition of a vehicle reported for homologation.
has super-classes
composition c

owner business partner numberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010200

A business partner number that identifies the owner of a data asset, material card, or digital twin record.
Example
A BPNL recorded as the owner of a simulation material card.
has super-classes
business partner number c

packaging plan specificationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000095

plan specification that prescribes a packaging process
has super-classes
plan specification c

packaging processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000121

business process of putting some products or some portion of material into a package according to a packaging plan specification
has super-classes
business process c

paint damagec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010087

A quality of a painted product or component indicating damage to the paintwork, such as scratches, chips, cracks, or coating loss.
Example
Stone-chip damage on a painted bumper cover.
has super-classes
quality c

parallel parameter expansionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010302

Expected value datatype: xsd:float; expected unit: percent.
A structural simulation parameter that specifies expansion parallel to a reference direction.
Example
Expansion parameter parallel to flow direction in a material card.
has super-classes
structural simulation parameter c

parallel parameter temperaturec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010301

Expected value datatype: xsd:float; expected unit: K.
A structural simulation parameter that specifies temperature for behavior parallel to a reference direction.
Example
Temperature parameter parallel to fiber orientation in a material card.
has super-classes
structural simulation parameter c
has sub-classes
parallel quasistatic temperature parameter c

parallel quasistatic temperature parameterc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010304

Expected value datatype: xsd:float; expected unit: K.
A structural simulation parameter that specifies the test temperature for quasistatic behavior parallel to a reference direction.
Example
Temperature used for a parallel-direction ISO 527 stress-strain curve.
has super-classes
parallel parameter temperature c

part name at manufacturerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010184

An identifier or designation by which a manufacturer names a part type in its own records.
Example
A manufacturer-specific sales or engineering name for a vehicle part.
has super-classes
identifier c

part numberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000007

identifier that uniquely identifies an artifact (material artifact) and that is created according to some part numbering system
has super-classes
identifier c
has sub-classes
manufacturer part number c

part type informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010182

An information content entity that describes the designed part type instantiated by a physical part or batch.
Example
Part type information for a connector housing used across several produced parts.
has super-classes
information content entity c

personc back to ToC or Class ToC

IRI: http://xmlns.com/foaf/0.1/Person

has super-classes
Homo sapiens c
is in domain of
owns op
is in range of
acts on behalf of op

phase boundary (realization)c back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000882

A phase boundary is a realizable entity that is realized by the transition between distinct phases.
has super-classes
realizable entity c
has sub-classes
glass transition temperature c, state of matter boundary c

physical dimensionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010129

A quality that characterizes a physical extent or dimensional feature of a material entity, product, component, or geometric feature.
Example
Length, width, thickness, or diameter used to characterize an automotive component.
has super-classes
length c

physical location identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000008

identifier that identifies a physical location (site)
is equivalent to
identifier c and (denotes op some site c)
has super-classes
identifier c
has sub-classes
global location number c

physical propertyc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010345

A material property that characterizes a material's physical state or behavior independently of a specific chemical reaction.
Example
Density, viscosity, and specific volume recorded for a polymer material.
has super-classes
material property c

piece of transport equipmentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000041

piece of equipment that has the function of holding, protecting, and securing a number of material entites for transportation purposes
is equivalent to
object c and (bearer of op some transport equipment role c)
has super-classes
object c
has sub-classes
container c

planc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/OBI_0000260

A plan is a realizable entity that is the inheres in a bearer who is committed to realizing it as a completely executed planned process.
has super-classes
realizable entity c

plan specificationc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000104

A directive information entity with action specifications and objective specifications as parts, and that may be concretized as a realizable entity that, if realized, is realized in a process in which the bearer tries to achieve the objectives by taking the actions specified.
2/3/2009 Comment from OBI review. Action specification not well enough specified. Conditional specification not well enough specified. Question whether all plan specifications have objective specifications. Request that IAO either clarify these or change definitions not to use them
has super-classes
directive information entity c
has sub-classes
bill of materials c, commercial service specification c, dismantling guideline for recycling c, dismantling instructions c, dismantling sequence c, fastening technique c, material standard c, packaging plan specification c, software c, supply chain plan specification c, used quality standard c

planned processc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/COB_0000082

A process that is initiated by an agent who intends to carry out a plan to achieve an objective through one or more actions as described in a plan specification.
has super-classes
process c
has sub-classes
completely executed planned process c
is disjoint with
material reacting process c

polyamidec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000009

Polyamides are semi-crystalline polymers known for good thermal and chemical resistance.
A polymer containing repeating amide (-CONH-) linkages in the polymer backbone.
Example
Nylon 6, Nylon 12, Nylon 66.
has super-classes
thermoplastic polymer c
has sub-classes
polyamide 66 c

polyamide 66c back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000010

PA66 has a higher melting point around 260 degC than PA6 but absorbs moisture, which affects dimensional stability.
A semicrystalline thermoplastic polyamide synthesized from hexamethylenediamine and adipic acid.
Example
Material used for cylinder head covers and radiator end tanks.
has super-classes
polyamide c

polyamide 66 glass fiber 25 percentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000011

The addition of 25% glass fiber significantly increases stiffness and tensile strength compared to neat PA66.
A composite material that has a polyamide 66 matrix and nominally 25 percent glass fiber by mass.
Example
Structural components in the engine bay requiring high stiffness at elevated temperatures.
has super-classes
composite c

polycrystalc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020106

A polycrystal is a connected material entity aggregate that consists of multiple crystal grains joined through crystallographic interfaces.
has super-classes
connected material entity aggregate c

polymerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000888

A polymer is an engineered material that consists of many repeated subunits (monomers) to form long chains. The atoms within a polymer chain are bonded together by covalent bonds. The intermolecular forces between polymer chains are typically represented by van der waals forces and hydrogen bonds.
is equivalent to
material c and (output of op some polymerization c)
has super-classes
material c
has sub-classes
biopolymer c, thermoplastic polymer c

polymerizationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0010033

The chemical process of reacting monomers, oligomers, or reactive precursors together to form longer macromolecular chains or three-dimensional networks
has super-classes
process c

porosityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020005

itensive quality embodiying the fraction of the materials (enclosing) spatial region occupied by pores.
has super-classes
intensive quality c
is disjoint with
ASTM grainsize c, aggregate state c, crystal structure c, defect density c, density c, crystallographic texture c, pressure c, specific surface area c, temperature c, grain size distribution c, composition c, metallic grain structure c

portion of matterc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000001

It is also representing a distinct physical or conceptual part of a material or substance. The open energy ontology OEO defines portion of matter as a subclass of object aggregate, which implies countability. Our portion is not (precisely) countable and thus bearer of intensive properties.
A material entity that is not demarcated by any physical discontinuities. At some finer level of granularity it is an object aggregate, at some coarser level of granularity it is a fiat object part,but at this level of granularity it is neither.
has super-classes
material entity c
has sub-classes
material c

post-consumer material sharec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010122

A mass proportion that quantifies material content originating from products or materials recovered after consumer or user service.
Example
The share of polypropylene recovered from end-of-life vehicle parts.
has super-classes
mass proportion c

pre-consumer material sharec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010121

A mass proportion that quantifies material content originating from pre-consumer production residues, by-products, rework, or scrap.
Example
The share of molding scrap reused before the product reached a consumer.
has super-classes
mass proportion c

pressurec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000896

The pressure is commonly measured in Pascals.
an intensive quality describing the force exerted per unit area in or on a material.
has super-classes
intensive quality c
is disjoint with
temperature c, ASTM grainsize c, aggregate state c, crystal structure c, defect density c, density c, crystallographic texture c, specific surface area c, temperature c, porosity c, grain size distribution c, composition c, metallic grain structure c

pressure-volume-temperature datac back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010346

A data item that records pressure-volume-temperature behavior of a material.
Example
pVT curve data used for injection molding simulation of a thermoplastic.
has super-classes
data item c
is in domain of
has pressure-volume-temperature data point op

pressure-volume-temperature data pointc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010354

A data item that records one pressure, temperature, and specific volume tuple for a material.
Example
A pVT data point with 80 MPa, 280 degC, and 0.91 dm3/kg for a polyamide melt.
has super-classes
data item c
is in domain of
has pressure-volume-temperature pressure datum op, has pressure-volume-temperature specific volume datum op, has pressure-volume-temperature temperature datum op
is in range of
has pressure-volume-temperature data point op

pressure-volume-temperature pressure datumc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010355

Expected value datatype: xsd:float; expected unit: MPa or Pa.
A value specification that records the pressure value of a pressure-volume-temperature data point.
Example
80 MPa recorded as the pressure datum of a pVT data point.
has super-classes
value specification c
is in range of
has pressure-volume-temperature pressure datum op

pressure-volume-temperature specific volume datumc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010357

Expected value datatype: xsd:float; expected unit: dm3/kg or cm3/g.
A value specification that records the specific volume value of a pressure-volume-temperature data point.
Example
0.91 dm3/kg recorded as the specific volume datum of a pVT data point.
has super-classes
value specification c
is in range of
has pressure-volume-temperature specific volume datum op

pressure-volume-temperature temperature datumc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010356

Expected value datatype: xsd:float; expected unit: degC or K.
A value specification that records the temperature value of a pressure-volume-temperature data point.
Example
280 degC recorded as the temperature datum of a pVT data point.
has super-classes
value specification c
is in range of
has pressure-volume-temperature temperature datum op

primary materialc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010128

A material entity produced from virgin raw resources and used for the first time in a production process.
Example
Virgin PA66 resin produced from primary chemical feedstocks.
has super-classes
material c

primary shapingc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000899

A manufacturing process that creates a defined workpiece from shapeless material by producing cohesion, whereby the characteristic properties of the material become visible in the end product.
Example
Casting, Sintering
has super-classes
manufacturing process c
has sub-classes
primary shaping from the plastic state c

primary shaping from the plastic statec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000907

A primary shaping process that involves forming materials from a plastic state.
Example
Thermoforming of plastic sheets.
has super-classes
primary shaping c
has sub-classes
injection molding c

processc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000015

(Elucidation) p is a process means p is an occurrent that has some temporal proper part and for some time t, p has some material entity as participant
Example
An act of selling; the life of an organism; a process of sleeping; a process of cell-division; a beating of the heart; a process of meiosis; the taxiing of an aircraft; the programming of a computer
has super-classes
occurrent c
has sub-classes
absorption of radiation c, biological process c, business process c, change of temperature c, chemical reaction c, corrosion c, deformation c, dismantling c, emission of radiation c, evolution of damage c, flow of electric charge c, generation of magnetic field c, geological process c, heat flow c, lifecycle stage c, material location change process c, material reacting process c, mechanical process c, planned process c, polymerization c, process chain c, recycling c, reuse c, stimulating process c, treatment technique c
is in domain of
changes quality op, concretizes op, has input op, occupies temporal region op, occurs in op, realizes op
is in range of
has realization op, is concretized as op
is disjoint with
temporal region c, spatiotemporal region c, process boundary c

process attributec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000008

Process attribute for a process has a similar application to specifically dependened continuant (SDC) for an independent continuant (IC). Furthermore, process attribute describes how SDCs of some participants, i.e., ICs, change in a process. Specific rates, e.g., tensile rate, cooling rate, etc. should be added as subclasses of this class.
a process attribute is a dependent occurrent that existentially depends on a process.
Example
Tensile rate in a tensile testing process. Cooling rate in a quenching process
has super-classes
occurrent c
has sub-classes
component mileage c, process footprint c

process boundaryc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000035

p is a process boundary =Def p is a temporal part of a process & p has no proper temporal parts
Example
The boundary between the 2nd and 3rd year of your life
has super-classes
occurrent c
is in domain of
occupies temporal region op, occurs in op
is disjoint with
temporal region c, spatiotemporal region c, process c

process carbon footprintc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010024

A process footprint that quantifies greenhouse gas emissions associated with executing a process.
Example
The carbon footprint of recycling one kilogram of PA66-GF25 scrap.
has super-classes
process footprint c

process chainc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020143

A process chain is a process that 'has continuant part' subprocesses S1...Sn where S1...Sn precede each other and where some object or object aggregate that are output of Sn are then input to Sn+1.
has super-classes
process c
has sub-classes
lifecycle c

process footprintc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010023

A process attribute that quantifies environmental burden associated with executing a process under specified boundary conditions.
Example
Electricity consumption and associated emissions for one injection molding cycle.
has super-classes
process attribute c
has sub-classes
process carbon footprint c

process informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010217

An information content entity that records the type, method, timing, or outcome of a process.
Example
A recycling batch process record containing treatment procedure and process type.
has super-classes
information content entity c

process lossc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010222

Expected value datatype: xsd:float; expected unit: kg.
A mass quality that quantifies material lost during a process step.
Example
A process loss of 0.5 kg during washing of a recycling batch.
has super-classes
mass c

process typec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010218

An information content entity that classifies a process according to its role in a treatment, recycling, or logistics chain.
Example
Sorting or transport recorded as the process type for a reverse-chain process step.
has super-classes
information content entity c

procurement type specificationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010367

A categorical value specification that states whether a material is produced in-house or procured externally.
Example
A procurement type whose value E denotes in-house production.
has super-classes
categorical value specification c

product carbon footprintc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010022

Expected value datatype: xsd:float; expected unit: kg CO2e.
A product footprint that specifies greenhouse gas emissions associated with a product over a stated lifecycle scope.
Example
18.4 kg CO2e as the product carbon footprint for one steering system.
has super-classes
product footprint c, value specification c
has sub-classes
new production carbon footprint c, recycling carbon footprint c, remanufacturing carbon footprint c, reuse carbon footprint c, selected r-strategy carbon footprint c

product datac back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010185

An information content entity that records identifying, descriptive, composition, or lifecycle data about a product.
Example
A vehicle product data record containing model range, brand, production date, and material composition.
has super-classes
information content entity c

product footprintc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010020

An information content entity that records an environmental footprint of a product over a stated scope.
Example
A product footprint report for an alternator covering cradle-to-gate carbon emissions and recycled material content.
has super-classes
information content entity c
has sub-classes
product carbon footprint c

product hierarchy nodec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010362

Expected value datatype: xsd:string.
An identifier that denotes the product hierarchy class to which a material is assigned.
Example
The product hierarchy code 0846194007 of a belt tensioner.
has super-classes
identifier c

product identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_0080001

is equivalent to
denotes op some material product c
has super-classes
identifier c
has sub-classes
vehicle identification number c

product production processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000123

business process that consists of at least one manufacturing process through which raw materials and components are transformed or modified to create a material product
has super-classes
business process c

product qualityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010074

A disposition of a product or component to satisfy requirements for an intended circular economy route, based on relevant condition, completeness, functional, and standard-based criteria.
Example
A reused body part assigned a quality class after inspection for dents, corrosion, paint damage, and completeness.
has super-classes
disposition c

product segmentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010364

Expected value datatype: xsd:string.
An identifier that denotes the functional product segment of a material.
Example
The segment 020000 Belt Tensioner of a material.
has super-classes
identifier c

production datec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010163

A date value specification that records when a vehicle, component, product, or material batch was produced.
Example
The production date of a vehicle read from manufacturer records.
has super-classes
date value specification c

proportionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020101

A proportion is a relational quality between two entities (the whole and the part) which quantifies the relation between the whole and its part.
has super-classes
relational quality c
has sub-classes
mass proportion c, molar proportion c, volume proportion c
is disjoint with
bond c

publicationc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000311

A document that is the output of a publishing process.
Revisit the term in Octorber 2020. Improve the defintion.
is equivalent to
document c and (is specified output of op only publishing process c)
has super-classes
document c

publishing processc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000444

A planned process of making information, such as literature, music, and software etc., available to the public for sale or for free.
has super-classes
completely executed planned process c

purchase orderc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000004

agreement between a buyer and a vendor (supplier) that that contains a set of commitments on the buyer and the vendeor
has super-classes
agreement c

qualityc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000019

(Elucidation) A quality is a specifically dependent continuant that, in contrast to roles and dispositions, does not require any further process in order to be realized
Example
The colour of a tomato; the ambient temperature of this portion of air; the length of the circumference of your waist; the shape of your nose; the shape of your nostril; the mass of this piece of gold
has super-classes
specifically dependent continuant c
has sub-classes
body part quality c, completeness c, component quantity c, component status c, crack count c, damage area c, dent damage c, drive type c, environmental condition c, expected mileage c, extensive quality c, intensive quality c, material format c, material physical state c, material status c, mechanical load amplitude at fleet level c, mechanical load amplitude at instance level c, mechanical load cycles at fleet level c, mechanical load cycles at instance level c, mounting point integrity c, paint damage c, quality grade c, recycled c, relational quality c, surface cleanliness c, vehicle condition c, vehicle type c
is in range of
changes quality op, has quality op
is disjoint with
realizable entity c

quality gradec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010078

A quality that records the grade assigned to a product or component according to a stated quality standard or assessment scheme.
Example
A, B, or C quality grade assigned to a used car part.
has super-classes
quality c

quasistatic simulationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010110

A simulation process that represents material or component response under loading conditions where inertial effects are negligible.
Example
A quasistatic finite element simulation of a bracket under service load.
has super-classes
simulation process c

quasistatic strain normalc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010114

A mechanical property or simulation output quality that represents strain normal to a reference direction under quasistatic loading.
Example
Normal strain predicted perpendicular to fiber orientation in a quasistatic simulation.
has super-classes
mechanical property c

quasistatic strain parallelc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010115

A mechanical property or simulation output quality that represents strain parallel to a reference direction under quasistatic loading.
Example
Strain predicted parallel to fiber orientation in a quasistatic simulation.
has super-classes
mechanical property c

quasistatic stress normalc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010112

A strength-related material or simulation output quality that represents stress normal to a reference direction under quasistatic loading.
Example
Normal stress predicted by a quasistatic simulation perpendicular to fiber orientation.
has super-classes
strength c

quasistatic stress parallelc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010113

A strength-related material or simulation output quality that represents stress parallel to a reference direction under quasistatic loading.
Example
Stress predicted parallel to fiber orientation in a quasistatic simulation.
has super-classes
strength c

range of uncertaintyc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010341

A value specification that states the tolerance or uncertainty interval associated with a material composition or measured value.
Example
A plus-or-minus range reported for a recycled material share.
has super-classes
uncertainty c

raw materialc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000102

material entity which has the raw material role
has super-classes
material entity c
has sub-classes
raw material feedstock c

raw material acquisitionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010027

A lifecycle stage in which natural resources, secondary materials, or basic feedstocks are obtained and prepared for production.
Example
Obtaining recycled polymer regranulate for later component production.
has super-classes
lifecycle stage c

raw material feedstockc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010000

Whether a material is raw material depends on its participation in a particular production or recycling workflow.
A material entity that is intended to be consumed, transformed, or incorporated as input in a manufacturing, recycling, or material processing process.
Example
PA66 pellets supplied to an injection molding process as input material.
has super-classes
raw material c

raw material rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000079

role held by a material entity when it is acquired by an organizational entity with some plan to transform or modify it into intermediate-level components or substances or into a product
has super-classes
role c

realizable entityc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000017

(Elucidation) A realizable entity is a specifically dependent continuant that inheres in some independent continuant which is not a spatial region & which is of a type some instances of which are realized in processes of a correlated type
Example
The role of being a doctor; the role of this boundary to delineate where Utah and Colorado meet; the function of your reproductive organs; the disposition of your blood to coagulate; the disposition of this piece of metal to conduct electricity
has super-classes
specifically dependent continuant c
has sub-classes
disposition c, phase boundary (realization) c, plan c, role c
is in domain of
has realization op, responds with op
is in range of
realizes op
is disjoint with
quality c

receiving processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000124

planned process in which an agent receives some material entity from another agent
has super-classes
business process c

recycledc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010007

Use for the origin state of a material; use recycled material share for quantities or proportions.
A quality of a material entity indicating that the material has an origin in a recycling process rather than only in primary material production.
Example
A recycled quality borne by a polymer regrind used in a new injection molding batch.
has super-classes
quality c

recycled materialc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010006

This class covers material entities whose origin is a recycling process; the amount or share of recycled content should be represented separately.
A material entity that has been recovered from waste, discarded products, by-products, or production residues through a recycling process for subsequent use.
Example
Regranulated polypropylene produced from end-of-life vehicle parts.
has super-classes
material c

recycled material sharec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010021

A relational quality that relates a material, component, or product to the proportion of its material content that originates from recycled sources.
Example
A bumper fascia with 30 percent recycled polypropylene content.
has super-classes
relational quality c

recyclingc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010054

A process in which used materials, components, or products are collected and processed to recover material for further use.
Example
Sorting and regranulating polymer parts from an end-of-life vehicle.
has super-classes
process c
has sub-classes
chemical recycling c, mechanical recycling c

recycling availabilityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010058

A disposition of a product, component, or material to be practically available for recycling in a technical cycle.
Example
A component whose material can be separated and accepted by an established recycling route.
has super-classes
disposition c

recycling batchc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010210

A batch that is collected, transferred, or treated as one quantity in a recycling process.
Example
A sorted batch of dismantled polymer components sent to a recycler.
has super-classes
batch c
is in domain of
has recycling batch actor op

recycling batch actorc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010192

A supply chain agent that participates in the transfer, treatment, or documentation of a recycling batch.
Example
A dismantler, recycler, logistics provider, or receiving plant recorded for a recycling batch.
has super-classes
supply chain agent c

recycling batch identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010247

A batch identifier assigned to a recycling batch for traceability.
Example
BATCH-0001-9999-abcd recorded as a recycling batch identifier.
has super-classes
batch identifier c

recycling batch operatorc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010195

A supply chain agent that operates a transport, treatment, or recycling process for a recycling batch.
Example
The company operating the transport process for a recycling batch.
has super-classes
supply chain agent c

recycling batch receiverc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010194

A consignee that receives a recycling batch from another actor.
Example
A recycling facility receiving a batch of dismantled polymer components.
has super-classes
consignee c

recycling batch senderc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010193

A consignor that sends a recycling batch to another actor.
Example
A dismantling facility sending a sorted polymer batch to a recycler.
has super-classes
consignor c

recycling carbon footprintc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010033

Expected value datatype: xsd:float; expected unit: kg CO2e.
A product carbon footprint that specifies greenhouse gas emissions for a recycling scenario.
Example
12 kg CO2e attributed to recycling one dismantled bumper cover.
has super-classes
product carbon footprint c

recycling informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010248

An information content entity that records recycling-related source, batch, process, composition, or actor data.
Example
A recycling information record containing batch identifier, material source, and consumer share.
has super-classes
information content entity c

recycling lifecycle stagec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010031

A lifecycle stage in which used materials or products are processed to recover material for further use.
Example
Grinding, sorting, and regranulating a polymer component after dismantling.
has super-classes
lifecycle stage c

recycling material qualityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010057

A disposition of a product or material to be recycled while preserving a specified level of material quality.
Example
A polymer component designed so that the recovered polymer remains suitable for automotive applications.
has super-classes
disposition c

recycling process stepc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010215

A business process that is a distinguishable step in the handling or treatment of a recycling batch.
Example
Shredding, sorting, washing, or weighing as a recycling process step.
has super-classes
business process c

refraction (optical)c back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000790

e.g., air into glass
Optical property which describes the bending of light as it passes from one medium into another due to a change in the light’s speed.
has super-classes
optical property c

refurbishabilityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010232

A disposition of a product or component to be restored through refurbishment to an acceptable use state.
Example
A body control module assessed as refurbishable after testing.
has super-classes
disposition c

reinforcementc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010102

The Excel hint to PMD Core filler role was modeled as a material class here because the glossary term names the reinforcing material, not only the role.
A filler material that is incorporated into a matrix material to improve load-bearing, stiffness, strength, impact, or dimensional performance.
Example
Chopped glass fiber used as reinforcement in PA66-GF25.
has super-classes
filler c

relational qualityc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000145

b is a relational quality =Def b is a quality & there exists c and d such that c and d are not identical & b specifically depends on c & b specifically depends on d
Example
A marriage bond; an instance of love; an obligation between one person and another
has super-classes
quality c
has sub-classes
activity (thermodynamic) c, bond c, proportion c, recycled material share c
is in range of
has relational quality op

remaining lifetimec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010050

A temporal interval expected to remain before a product or component no longer satisfies its intended function or circular value criteria.
Example
An alternator estimated to have 24 months of usable service life remaining after inspection.
has super-classes
temporal interval c

remanufacturabilityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010231

A disposition of a product or component to be restored through remanufacturing to a specified performance or quality state.
Example
A starter motor assessed as remanufacturable after inspection.
has super-classes
disposition c

remanufacturing carbon footprintc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010034

Expected value datatype: xsd:float; expected unit: kg CO2e.
A product carbon footprint that specifies greenhouse gas emissions for a remanufacturing scenario.
Example
7.5 kg CO2e attributed to inspecting, repairing, and remanufacturing one alternator.
has super-classes
product carbon footprint c

repair timec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010083

A temporal interval required or estimated to repair a specified damage or defect on a product or component.
Example
The time needed to repair a paint scratch and small dent on a door panel.
has super-classes
temporal interval c

required tool and softwarec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010238

Expected value datatype: xsd:string; expected unit: not specified.
A directive information entity that specifies tools and software required for disassembly, testing, treatment, or reuse assessment.
Example
A list requiring a diagnostic application and a puller tool for proper disassembly.
has super-classes
directive information entity c

restricted heavy metalsc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010233

A material entity aggregate comprising heavy metal substances whose concentration is restricted by a stated regulation or standard.
Example
Lead, mercury, cadmium, and hexavalent chromium considered in ELV compliance.
has super-classes
metal c

reusabilityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010076

A disposition of a product or component to be reused in its original function under stated technical, legal, safety, and quality constraints.
Example
A complete undamaged headlamp assembly that can be installed as a replacement part.
has super-classes
disposition c

reusec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010073

A process in which a discarded or removed product or component is used again while retaining its original function.
Example
A dismantled and inspected body control module installed in another vehicle.
has super-classes
process c

reuse carbon footprintc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010035

Expected value datatype: xsd:float; expected unit: kg CO2e.
A product carbon footprint that specifies greenhouse gas emissions for a reuse scenario.
Example
2.1 kg CO2e attributed to checking and reusing one component.
has super-classes
product carbon footprint c

reutilization material sharec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010119

A mass proportion that quantifies the share of material from rework, regrind, or scrap that is reused within the process or production system that generated it.
Example
The percentage of in-process regrind returned to an injection molding feedstock.
has super-classes
mass proportion c

rolec back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000023

(Elucidation) A role b is a realizable entity such that b exists because there is some single bearer that is in some special physical, social, or institutional set of circumstances in which this bearer does not have to be & b is not such that, if it ceases to exist, then the physical make-up of the bearer is thereby changed
Example
The priest role; the student role; the role of subject in a clinical trial; the role of a stone in marking a property boundary; the role of a boundary to demarcate two neighbouring administrative territories; the role of a building in serving as a military target
has super-classes
realizable entity c
has sub-classes
additive role c, agent role c, evaluant role c, filler role c, location role c, manufacturer role c, material component role c, material product role c, material resource role c, matrix role c, raw material role c, traceable resource unit role c, transport equipment role c
is in range of
has role op
is disjoint with
disposition c

routing operationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010369

A manufacturing process that constitutes one step of a production routing and is performed at a work center.
Example
Operation 0010, the packaging step of a belt tensioner routing.
has super-classes
manufacturing process c

routing operation recordc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010373

An information content entity that is about a routing operation and records its operation number, control key, and work center.
Example
The routing record of operation 0010 with its control key and standard values.
has super-classes
information content entity c

safety informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010053

A directive information entity that specifies safety-relevant instructions, warnings, or constraints for handling, dismantling, treating, transporting, or reusing a product or component.
Example
A warning to disconnect a high-voltage battery before dismantling a component.
has super-classes
directive information entity c

sales namec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010189

An identifier that records the commercial name under which a vehicle, part, or product is sold.
Example
The sales name shown in vehicle product data.
has super-classes
identifier c

scalar value specificationc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/OBI_0001931

A value specification that consists of two parts: a numeral and a unit label
has super-classes
value specification c
has sub-classes
standard value c, unit conversion factor c

secondary materialc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010127

A material entity obtained from waste, by-products, production residues, or recovered products and intended to substitute for primary material in a production process.
Example
A recycled polymer regranulate used as feedstock for a new automotive component.
has super-classes
material c

selected r-strategyc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010143

A directive information entity that specifies the circular economy strategy selected for a product or component.
Example
A selected strategy of reuse, recycling, or remanufacturing for a dismantled component.
has super-classes
directive information entity c
is in range of
has selected r-strategy op

selected r-strategy carbon footprintc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010145

Expected value datatype: xsd:float; expected unit: kg CO2e.
A product carbon footprint that specifies the greenhouse gas emissions of the selected circular economy strategy for a component.
Example
3.2 kg CO2e resulting from choosing reuse for a dismantled component.
has super-classes
product carbon footprint c

selected r-strategy rationalec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010142

An information content entity that states the rationale for selecting a reuse, repair, remanufacturing, recycling, recovery, or disposal strategy for a product or component.
Example
A reason stating that reuse was rejected because mounting points were broken.
has super-classes
information content entity c

selling business processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000125

business process wherein a product or commercial service is offered by an agent (seller) for another agent (buyer) to acquire ownership via a financial instrument
has super-classes
business process c

service lifec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010260

A temporal interval during which a component can perform its intended function under stated service conditions.
Example
A service life interval of 12000 h for a bearing under stated load and temperature.
has super-classes
temporal interval c
has sub-classes
chemical service life component c, mechanical service life component c, thermal service life component c

service providerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000022

person or organization which has a service provider role
is equivalent to
(organization c or person c) and (bearer of op some service provider role c)
has super-classes
supplier c
has sub-classes
carrier c

service provider rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000064

supplier role held by a person or organization when it offers to sell or provide a commercial service
has super-classes
supplier role c
has sub-classes
logistics service provider role c

service supply chain systemc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000040

supply chain system that is formed to deliver some commercial services
is equivalent to
supply chain system c and (participates in op some commercial service c)
has super-classes
supply chain system c

shapec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0050155

Extemsive quality, the visible makeup characteristic (spatial form or contour) of a particular item or kind of item.
has super-classes
extensive quality c
is disjoint with
chemical potential c, electric potential c, size c, mass c, energy c, activity (thermodynamic) c

shear viscosityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000025

Expected value datatype: xsd:float; expected unit: Pa.s.
A viscosity that quantifies resistance to flow under shear deformation.
Example
Viscosity curve data required for Moldflow simulation.
has super-classes
viscosity c

shipmentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000051

collection of material entities delivered to a receiver's location that have undergone the same dispatch and receipt processes
is equivalent to
material entity c and (bearer of op some shipment role c)
has super-classes
material entity c

shipment preparation processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000126

business process in which some material entities are prepared to be transported together to a receiver’s location
has super-classes
business process c

shipment rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000081

traceable resource unit role held by material entities when they undergo the same dispatch and receipt processes as prescribed by a bill of lading
has super-classes
traceable resource unit role c

shipperc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000019

person or business organization that prepares and sends shipments for transport
is equivalent to
(person c or business organization c) and (bearer of op some consignor role c)
has super-classes
agent c

simulation cardc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010290

An information content entity that specifies material, software, calibration, and parameter data used for simulation.
Example
A material card used for an injection molding or structural simulation.
has super-classes
information content entity c
has sub-classes
material card c

simulation parameterc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010306

A value specification that supplies an input, calibration, boundary, or output value for a simulation.
Example
A stress, strain, temperature, viscosity, or specific-volume parameter used in a material card.
has super-classes
value specification c

simulation processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000933

A computing process that models the behavior of a system over time using mathematical or computational techniques.
has super-classes
computing process c
has sub-classes
ageing simulation c, creep simulation c, fatigue simulation c, manufacturing simulation c, quasistatic simulation c, thermal simulation c

simulation softwarec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010293

Expected value datatype: xsd:string; expected unit: not specified.
A software used to create, execute, calibrate, or interpret a simulation.
Example
A named simulation software and version used for a material card.
has super-classes
software c

simulation typec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010292

Expected value datatype: xsd:string; expected unit: not specified.
An information content entity that classifies a simulation according to the modeled process or response.
Example
Structural simulation or manufacturing simulation recorded as a simulation type.
has super-classes
information content entity c

sitec back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000029

(Elucidation) A site is a three-dimensional immaterial entity whose boundaries either (partially or wholly) coincide with the boundaries of one or more material entities or have locations determined in relation to some material entity
Example
A hole in a portion of cheese; a rabbit hole; the Grand Canyon; the Piazza San Marco; the kangaroo-joey-containing hole of a kangaroo pouch; your left nostril (a fiat part - the opening - of your left nasal cavity); the lumen of your gut; the hold of a ship; the interior of the trunk of your car; hole in an engineered floor joist
has super-classes
immaterial entity c
has sub-classes
manufacturer plant site c
is in range of
occurs in op
is disjoint with
spatial region c, continuant fiat boundary c

sizec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020132

an extensive quality of a material entity that describes its spatial extend.
has super-classes
extensive quality c
has sub-classes
length c, volume c
is disjoint with
chemical potential c, electric potential c, mass c, energy c, activity (thermodynamic) c, shape c

softwarec back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000010

Software is a plan specification composed of a series of instructions that can be interpreted by or directly executed by a processing unit.
has super-classes
plan specification c
has sub-classes
disassembly software c, simulation software c

spatial regionc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000006

(Elucidation) A spatial region is a continuant entity that is a continuant part of the spatial projection of a portion of spacetime at a given time
Example
As for zero-dimensional spatial region, one-dimensional spatial region, two-dimensional spatial region, three-dimensional spatial region
has super-classes
immaterial entity c
is disjoint with
site c, continuant fiat boundary c

spatiotemporal regionc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000011

(Elucidation) A spatiotemporal region is an occurrent that is an occurrent part of spacetime
Example
The spatiotemporal region occupied by the development of a cancer tumour; the spatiotemporal region occupied by an orbiting satellite
has super-classes
occurrent c
is disjoint with
temporal region c, process c, process boundary c

specific heat capacityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000028

Expected value datatype: xsd:float; expected unit: J kg^-1 K^-1.
A heat capacity that quantifies heat required to raise the temperature of unit mass of a substance by one temperature unit.
Example
A specific heat capacity of 1700 J kg^-1 K^-1 for polypropylene.
has super-classes
heat capacity c

specific surface areac back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000942

an intensive quality embodying the total surface area of a material per unit of mass or volume.
has super-classes
intensive quality c
is disjoint with
ASTM grainsize c, aggregate state c, crystal structure c, defect density c, density c, crystallographic texture c, pressure c, temperature c, porosity c, grain size distribution c, composition c, metallic grain structure c

specific volumec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010348

Expected value datatype: xsd:float; expected unit: dm3/kg.
An intensive quality that quantifies volume per unit mass of a material.
Example
Specific volume of a polymer melt used in pVT data for process simulation.
has super-classes
intensive quality c

specifically dependent continuantc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000020

b is a specifically dependent continuant =Def b is a continuant & there is some independent continuant c which is not a spatial region & which is such that b specifically depends on c
Example
(with multiple bearers) John's love for Mary; the ownership relation between John and this statue; the relation of authority between John and his subordinates
(with one bearer) The mass of this tomato; the pink colour of a medium rare piece of grilled filet mignon at its centre; the smell of this portion of mozzarella; the disposition of this fish to decay; the role of being a doctor; the function of this heart to pump blood; the shape of this hole
has super-classes
continuant c
has sub-classes
quality c, realizable entity c
is in domain of
characteristic measured by assay op, concretizes op
is in range of
assay measures characteristic op, has characteristic op, is concretized as op
is disjoint with
independent continuant c, generically dependent continuant c, independent continuant c, generically dependent continuant c

standard valuec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010371

A scalar value specification that states a planned standard quantity of a routing operation for a given activity type, such as a setup, machine, or labour time.
Example
A planned machine time of thirty seconds for an assembly operation.
has super-classes
scalar value specification c

start timestampc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010227

Expected value datatype: xsd:dateTime; expected unit: not specified.
A date value specification that records the start time of a process step.
Example
The start timestamp of a sorting step in a recycling batch process.
has super-classes
date value specification c

state of matter boundaryc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020164

A state of matter boundary is a phase boundary that is realized by the transition from one aggregate state to another aggregate state.
has super-classes
phase boundary (realization) c
has sub-classes
melting point c

stiffnessc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000949

The stiffness is a material property describing the resistance of a material to deformation under an applied force.
has super-classes
material property c
has sub-classes
elastic modulus c, flexural modulus c
is disjoint with
strength c

stimulating processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000950

The stimulating process is a process describing the application of an external influence, such as force, heat, or radiation, to study material response.
is equivalent to
process c and (realizes op some (disposition c or material property c) and (characteristic of op some portion of matter c))
has super-classes
process c

strain at breakc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000022

Expected value datatype: xsd:float; expected unit: not specified.
A mechanical property that quantifies specimen strain at rupture.
Example
3% strain at break for a glass-filled polyamide.
has super-classes
mechanical property c

strengthc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000952

The strength is a material property describing the maximum stress a material can withstand before failure.
has super-classes
mechanical property c
has sub-classes
flexural strength c, impact strength c, quasistatic stress normal c, quasistatic stress parallel c, stress at break c
is disjoint with
stiffness c

stress at breakc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000007

Expected value datatype: xsd:float; expected unit: MPa.
A strength that quantifies tensile stress at specimen rupture.
Example
A value of 150 MPa for a GF-reinforced polymer.
has super-classes
strength c

structural simulation parameterc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010297

A value specification that provides an input, calibration, or output parameter for a structural simulation.
Example
Stress, strain, or temperature values used in a structural material model.
has super-classes
value specification c
has sub-classes
normal parameter temperature c, parallel parameter expansion c, parallel parameter temperature c

sub-group identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010070

An identifier that records the code or number of a material sub-group in a material classification scheme.
Example
The VDA 231-106 sub-group code '2.1.1'.
has super-classes
identifier c

sub-group namec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010069

An identifier that records the name of a material sub-group in a material classification scheme.
Example
The VDA 231-106 sub-group name 'cast aluminium alloys'.
has super-classes
identifier c

supplierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000020

person or organization which has a supplier role
is equivalent to
(organization c or person c) and (bearer of op some supplier role c)
has super-classes
agent c
has sub-classes
service provider c

supplier rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000063

agent role held by a person or organization when it offers to sell or provide products or services
has super-classes
agent role c
has sub-classes
service provider role c

supply chain agentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000023

person or business organization who supplies material products or commercial services to other agents in a supply chain
is equivalent to
(organization c or person c) and (bearer of op some supply chain agent role c)
has super-classes
agent c
has sub-classes
recycling batch actor c, recycling batch operator c
is in range of
has recycling batch actor op

supply chain agent rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000071

role held by an agent that is a part of a supply chain system when it supplies material products or commercial services to other agents in the supply chain system
is equivalent to
agent role c and (has realization op some supply chain process c) and (inheres in op some agent c and (part of op some object aggregate c and (has member op only supplier c)))
has super-classes
agent role c

supply chain node rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000077

location role held by a geospatial site when it is the site some supply chain process
has super-classes
location role c

supply chain objective specificationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0040129

Bridge axiom for the PMD class stub referenced by the LOG import.
An objective specification that states an objective for a supply chain process.
has super-classes
objective specification c

supply chain plan specificationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000097

plan specification that has one or more supply chain objective specifications as parts and that prescribes a supply chain process
has super-classes
plan specification c

supply chain processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_10001247

planned process in which a supply chain plan specification is realized by a number of supply chain agents
is equivalent to
business process c and (has participant op some supply chain agent c) and (concretizes op some supply chain plan specification c and (depends on op some supply chain agent c))
has super-classes
business process c

supply chain systemc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000038

engineered system composed of agents, facilties, machines, and information systems that is designed to deliver products and services to end customers through an engineered flow of information, material, and cash
is equivalent to
object aggregate c and (participates in op some process c and (has input op some plan c and (concretizes op some supply chain plan specification c))) and (participates in op some commercial service c or product production process c) and (has member op some supplier c)
has super-classes
object aggregate c
has sub-classes
manufacturing supply chain system c, service supply chain system c

supplying business processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000128

business process wherein a product or service is supplied
has super-classes
business process c

surface cleanlinessc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010082

A quality of a product, component, or material surface indicating the degree to which it is free from oil, dust, residues, and other contaminants.
Example
A cleaned polymer surface acceptable for adhesive bonding during reuse preparation.
has super-classes
quality c

sustainability informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010250

An information content entity that records sustainability-related attributes of a product, material, process, or circular economy scenario.
Example
A sustainability record containing recycled share, carbon footprint, and lifecycle stage.
has super-classes
information content entity c
is in range of
has sustainability information op

temperaturec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000967

The concept refers to an absolute temperature, not to be mistaken with temperature difference.
The temperature is a fundamental intensive quality representing the average atomic or molcular movement or vibration of a portion of matter.
has super-classes
intensive quality c
has sub-classes
melt temperature c, mold temperature c
is disjoint with
pressure c, ASTM grainsize c, aggregate state c, crystal structure c, defect density c, density c, crystallographic texture c, pressure c, specific surface area c, porosity c, grain size distribution c, composition c, metallic grain structure c

temperature over cyclesc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010278

Expected value datatype: xsd:string; expected unit: not specified.
A data item that records temperature change or temperature values across cycles.
Example
A temperature-over-cycles profile used in service-life assessment.
has super-classes
data item c

temperature spectrumc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010277

A data item that represents temperature magnitudes, durations, or cycles experienced by a component or product.
Example
A thermal load spectrum showing temperature cycles over vehicle use.
has super-classes
data item c

temporal instantc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000203

(Elucidation) A temporal instant is a zero-dimensional temporal region that has no proper temporal part
Example
The millennium
has super-classes
zero-dimensional temporal region c
is in domain of
first instant of op, last instant of op
is in range of
has first instant op, has last instant op

temporal intervalc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000202

(Elucidation) A temporal interval is a one-dimensional temporal region that is continuous, thus without gaps or breaks
Example
The year 2018.
has super-classes
one-dimensional temporal region c
has sub-classes
actual dismantling time c, actual lifetime c, average dismantling time c, component age c, component age in use c, remaining lifetime c, repair time c, service life c

temporal regionc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000008

(Elucidation) A temporal region is an occurrent over which processes can unfold
Example
As for zero-dimensional temporal region and one-dimensional temporal region
has super-classes
occurrent c
has sub-classes
one-dimensional temporal region c, zero-dimensional temporal region c
is in domain of
has first instant op, has last instant op
is in range of
exists at op, first instant of op, last instant of op, occupies temporal region op
is disjoint with
spatiotemporal region c, process c, process boundary c

test requirementsc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010075

An information content entity that states the test protocols and equipment required to assess a product or component for reuse, repair, remanufacturing, or recycling.
Example
A high-voltage component requiring insulation resistance testing before reuse.
has super-classes
information content entity c

thermal characterizationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010343

An information content entity that describes thermal behavior or thermal properties of a material.
Example
A thermal characterization including glass transition temperature and thermal expansion.
has super-classes
information content entity c

thermal propertyc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0000981

A thermal property is a material property representing attributes of a material that describe its behavior under temperature changes, such as thermal conductivity and expansion.
has super-classes
material property c
has sub-classes
coefficient of linear thermal expansion c, heat capacity c, thermophysical property c

thermal service life componentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010262

A service life component limited by thermal loading conditions.
Example
A 9000 h thermal service life component at a stated operating temperature.
has super-classes
service life c

thermal simulationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010111

A simulation process that represents heat transfer, temperature distribution, or thermally induced material behavior.
Example
A cooling simulation for an injection molded component.
has super-classes
simulation process c

thermophysical propertyc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010344

A material property that characterizes a material's physical response to thermal conditions.
Example
Glass transition temperature or coefficient of linear thermal expansion.
has super-classes
thermal property c

thermoplastic polymerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0050004

polymer that becomes moldable when heated and solidifies upon cooling
has super-classes
polymer c
has sub-classes
polyamide c

traceable resource unit rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000084

role held by a number of uniquely identified material entities when they participate in some supply chain processes or production processes while some agent observes them and collects information about them for future retrieval
has super-classes
role c
has sub-classes
load role c, lot role c, shipment role c

transfer identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010198

An identifier assigned to a transfer of material, components, products, or recycling batches between actors.
Example
A transfer identifier for movement of a recycling batch from dismantler to recycler.
has super-classes
identifier c

transport equipment rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000003

role held by a material artifact when it is planned to be involved in or is involved in carrying out some part of a planned transportation process and that is not consumed in that planned process
has super-classes
role c

transport processc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000143

material location change process involving the movement of material entities by some piece of transport equipment
has super-classes
material location change process c

transportation business functionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000053

business function that is realized in a transportation service
is equivalent to
business function c and (has realization op some transportation service c)
has super-classes
business function c

transportation servicec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000117

business process that results in placing a material entity in the possession of some agent without changing the ownership until the material entity is sold
has super-classes
logistics service c

transportation service provider rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000070

is equivalent to
logistics service provider role c and (inheres in op some (person c or business organization c) and (participates in op some transportation service c))
has super-classes
logistics service provider role c

treatment procedurec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010219

A treatment technique selected or applied for handling waste, components, materials, or recycling batches.
Example
An R4 treatment procedure recorded for a recycling batch.
has super-classes
treatment technique c

treatment techniquec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010062

A process used to treat a dismantled component, product, or material after removal from its original assembly.
Example
Mechanical shredding, cleaning, or material separation applied after dismantling.
has super-classes
process c
has sub-classes
treatment procedure c

uncertaintyc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0001036

A quantitative indication of the doubt about a measurement result, expressing the range within which the true value is expected to lie.
has super-classes
information content entity c
has sub-classes
range of uncertainty c

unit conversion factorc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010368

A scalar value specification that states the factor for converting a quantity of a material from its base unit to another unit.
Example
A factor of one kilogram per piece for a component.
has super-classes
scalar value specification c

unusual propertiesc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010140

A data item that records noteworthy, unexpected, or abnormal properties observed for a component during use, inspection, dismantling, or circular economy assessment.
Example
A note that a component shows unusual discoloration or deformation compared with its expected state.
has super-classes
data item c

usage datac back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010266

An information content entity that records service life, load, environmental, status, or incident data observed during product or component use.
Example
A usage data record containing component age, load spectrum, incidents, and service life estimates.
has super-classes
information content entity c
is in range of
has usage data op

used quality standardc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010080

A plan specification that defines the quality assessment criteria applied to a reused, repaired, remanufactured, or recycled product or component.
Example
VDI 4080 used as the assessment standard for reuse quality.
has super-classes
plan specification c

value specificationc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/OBI_0001933

An information content entity that specifies a value within a classification scheme or on a quantitative scale.
has super-classes
information content entity c
has sub-classes
categorical value specification c, date value specification c, manufacturing simulation parameter c, pressure-volume-temperature pressure datum c, pressure-volume-temperature specific volume datum c, pressure-volume-temperature temperature datum c, product carbon footprint c, scalar value specification c, simulation parameter c, structural simulation parameter c
is in domain of
has specified numeric value dp, has specified value dp, specifies value of op
is in range of
has value specification op

VDA standard identifierc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010334

An identifier that records the VDA material classification standard used for a material entry.
Example
VDA 231-106 used as the standard identifier for material classification.
has super-classes
identifier c

vehicle conditionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010146

A quality of a vehicle that characterizes its observed state relevant to use, dismantling, reuse, repair, recycling, or valuation.
Example
A vehicle condition assessment recorded at dismantling intake.
has super-classes
quality c

vehicle identification numberc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010093

An identifier assigned to an individual vehicle according to a vehicle identification number scheme.
Example
A 17-character vehicle identification number used in a dismantling record.
has super-classes
product identifier c
has sub-classes
anonymized vehicle identification number c

vehicle informationc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010191

An information content entity that records identifying, technical, lifecycle, or manufacturer data about a vehicle.
Example
Vehicle information containing original equipment manufacturer, model range, production date, and anonymized vehicle identification number.
has super-classes
information content entity c

vehicle modelc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010094

An identifier that records the model designation of a vehicle type as defined by a manufacturer.
Example
A manufacturer-specific vehicle model name used in a product data record.
has super-classes
identifier c

vehicle seriesc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010161

An identifier that records the vehicle series or platform series associated with a vehicle model or component.
Example
A vehicle series code used in dismantling or parts identification data.
has super-classes
identifier c

vehicle typec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010149

A quality of a vehicle that classifies the vehicle according to its design, construction, or intended purpose.
Example
Passenger car, light commercial vehicle, or heavy truck.
has super-classes
quality c

viscosityc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0000023

Expected value datatype: xsd:float; expected unit: Pa.s.
An intensive quality that quantifies a fluid material's resistance to flow.
Example
The melt viscosity of polypropylene at 230 degC.
has super-classes
intensive quality c
has sub-classes
shear viscosity c

volumec back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020150

Volume is a three dimensional size.
has super-classes
size c
has sub-classes
container volume c

volume proportionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/co/PMD_0020104

Volume proportion is a proportion which quantifies the volume of the part relative to the volume of the whole.
has super-classes
proportion c
has sub-classes
fiber material content volume fraction c
is disjoint with
mass proportion c, molar proportion c

waste codec back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010243

Expected value datatype: xsd:string; expected unit: not specified.
An identifier that classifies a waste material or waste-containing part according to a stated waste code system.
Example
A European List of Waste code assigned to a dismantled material fraction.
has super-classes
identifier c

water absorptionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010003

Expected value datatype: xsd:float; expected unit: %.
A disposition of a material to take up water from a liquid water or humid environment under specified exposure conditions.
Example
The percentage mass increase of a polyamide specimen after immersion in water.
has super-classes
material property c

water contentc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010104

The Excel source references ISO 15512 for plastics water content measurement.
A mass proportion that quantifies the amount of water contained in a material under specified measurement or conditioning conditions.
Example
Water content of a polyamide granulate measured before injection molding.
has super-classes
mass proportion c

weighing slipc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010224

A document that records the result of weighing materials, components, products, or recycling batches.
Example
A weighing slip issued by a scale during intake of a recycling batch.
has super-classes
document c

wholesalerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000024

person or business organization that buys products from distributors and resells them to retailers or other business organizations
is equivalent to
agent c and (bearer of op some wholesaler role c)
has super-classes
agent c

wholesaler rolec back to ToC or Class ToC

IRI: https://w3id.org/pmd/log/LOG_1000072

role held by a person or business organization when it buys some product from a distributor and resells them to retailers
is equivalent to
inheres in op some (person c or business organization c) and (participates in op some selling business process c and (realizes op some material product role c and (inheres in op some material entity c)))
has super-classes
agent role c

work centerc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010370

An object aggregate of machines, equipment, or workers that provides production capacity and at which routing operations are performed.
Example
An assembly work center comprising the machines and operators that join a belt tensioner.
has super-classes
object aggregate c

year of constructionc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010098

A date value specification that records the calendar year in which a product, component, vehicle, or facility was constructed or manufactured.
Example
The year 2019 recorded as the construction year of a vehicle.
has super-classes
date value specification c

young's modulusc back to ToC or Class ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0010131

Expected value datatype: xsd:float; expected unit: GPa.
An elastic modulus that quantifies the ratio of uniaxial stress to uniaxial strain in the linear elastic region of a material response.
Example
9.5 GPa Young's modulus for PA66-GF30 measured by tensile testing.
has super-classes
elastic modulus c

zero-dimensional temporal regionc back to ToC or Class ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000148

(Elucidation) A zero-dimensional temporal region is a temporal region that is a whole consisting of one or more separated temporal instants as parts
Example
A temporal region that is occupied by a process boundary; the moment at which a finger is detached in an industrial accident
has super-classes
temporal region c
has sub-classes
temporal instant c
is disjoint with
one-dimensional temporal region c

Object Properties

achieves_planned_objectiveop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/OBI_0000417

This relation obtains between a planned process and a objective specification when the criteria specified in the objective specification are met at the end of the planned process.

acts on behalf ofop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/log/LOG_1900001

relation from a material entity to a person or a group of agents or engineered system that holds when the material entity participates in some planned process in order to fulfill an objective for the person or group of agents or engineered system
has domain
material entity c and (not (fiat object part c))
has range
organization c or person c or (object aggregate c and (has member op some person c))

assay measures characteristicop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0009006

A relation between an assay and a characteristic, in which the assay generates a data item which is a measure of a characteristic.

bearer ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000196

A relation between an independent continuant and a specifically dependent continuant that inheres in it.

changes qualityop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/co/PMD_0025013

indicates that a process changes a quality
has domain
process c
has range
quality c

characteristic measured by assayop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0009007

Inverse of 'assay measures characteristic'

characteristic ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000052

a relation between a specifically dependent continuant (the characteristic) and any other entity (the bearer), in which the characteristic depends on the bearer for its existence.
Note that this relation was previously called "inheres in", but was changed to be called "characteristic of" because BFO2 uses "inheres in" in a more restricted fashion. This relation differs from BFO2:inheres_in in two respects: (1) it does not impose a range constraint, and thus it allows qualities of processes, as well as of information entities, whereas BFO2 restricts inheres_in to only apply to independent continuants (2) it is declared functional, i.e. something can only be a characteristic of one thing.

has characteristics: functional

has sub-properties
disposition of op, function of op, quality of op, role of op
is inverse of
has characteristic op

concretizesop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000059

A relationship between a specifically dependent continuant and a generically dependent continuant, in which the generically dependent continuant depends on some independent continuant in virtue of the fact that the specifically dependent continuant also depends on that same independent continuant. Multiple specifically dependent continuants can concretize the same generically dependent continuant.

denoted byop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000235

inverse of the relation 'denotes'
has domain
entity c
has range
information content entity c
is inverse of
denotes op

denotesop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000219

A primitive, instance-level, relation obtaining between an information content entity and some portion of reality. Denotation is what happens when someone creates an information content entity E in order to specifically refer to something. The only relation between E and the thing is that E can be used to 'pick out' the thing. This relation connects those two together. Freedictionary.com sense 3: To signify directly; refer to specifically
has super-properties
is about op
has domain
information content entity c
has range
entity c
is inverse of
denoted by op

depends onop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0002502

A relation between an entity and another entity on which it depends.

disposition ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000092

inverse of has disposition
This relation is modeled after the BFO relation of the same name which was in BFO2, but is used in a more restricted sense - specifically, we model this relation as functional (inherited from characteristic-of). Note that this relation is now removed from BFO2020.
has super-properties
characteristic of op
is inverse of
has disposition op

executesop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/STATO_0000102

relationship between a planned process and the plan specification that it carries out; it is defined as equivalent to the composed relationship (realizes o concretizes)
has sub-property chains
realizes op o concretizes op

exists atop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000108

(Elucidation) exists at is a relation between a particular and some temporal region at which the particular exists
Example
First World War exists at 1914-1916; Mexico exists at January 1, 2000
has domain
entity c
has range
temporal region c

first instant ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000221

t first instant of t' =Def t is a temporal instant & t' is a temporal region t' & t precedes all temporal parts of t' other than t
Example
An hour starting at midnight yesterday has first instant midnight yesterday
has domain
temporal instant c
has range
temporal region c
is inverse of
has first instant op

function ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000079

a relation between a function and an independent continuant (the bearer), in which the function specifically depends on the bearer for its existence
This relation is modeled after the BFO relation of the same name which was in BFO2, but is used in a more restricted sense - specifically, we model this relation as functional (inherited from characteristic-of). Note that this relation is now removed from BFO2020.
has super-properties
characteristic of op
has domain
function c
is inverse of
has function op

has characteristicop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000053

Inverse of characteristic_of

has characteristics: inverse functional

has sub-properties
has disposition op, has function op, has quality op, has role op
has range
specifically dependent continuant c
is inverse of
characteristic of op

has circular economy informationop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0009005

A relation that links a product, component, material, or batch to information about circular economy handling or assessment.
has domain
entity c
has range
circular economy information c

has dispositionop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000091

a relation between an independent continuant (the bearer) and a disposition, in which the disposition specifically depends on the bearer for its existence
has super-properties
has characteristic op
has domain
independent continuant c
has range
disposition c
is inverse of
disposition of op

has first instantop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000222

t has first instant t' =Def t' first instant of t
Example
The first hour of a year has first instant midnight on December 31

has characteristics: functional

has domain
temporal region c
has range
temporal instant c
is inverse of
first instant of op

has functionop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000085

a relation between an independent continuant (the bearer) and a function, in which the function specifically depends on the bearer for its existence
has super-properties
has characteristic op
has domain
independent continuant c
has range
function c
is inverse of
function of op

has identifierop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0009001

A relation that links an entity to an identifier denoting it in a stated system.
has domain
entity c
has range
identifier c

has inputop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0002233

p has input c iff: p is a process, c is a material entity, c is a participant in p, c is present at the start of p, and the state of c is modified during p.
has super-properties
has participant op
has domain
process c
is inverse of
input of op

has last instantop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000224

t has last instant t' =Def t' last instant of t
Example
The last hour of a year has last instant midnight December 31

has characteristics: functional

has domain
temporal region c
has range
temporal instant c
is inverse of
last instant of op

has material compositionop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0009002

A relation that links a product, component, material, or batch to a composition that describes its material constitution.
has domain
entity c
has range
composition c

has measurement unit labelop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000039

has characteristics: functional

has super-properties
has part op
has range
measurement unit label c

has memberop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0002351

has member is a mereological relation between a collection and an item.

has characteristics: irreflexive

has super-properties
has part op
is inverse of
member of op

has occurrent partop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000117

b has occurrent part c =Def c occurrent part of b
Example
Mary's life has occurrent part Mary's 5th birthday

has characteristics: transitive

has super-properties
has part op
has domain
occurrent c
has range
occurrent c
is inverse of
occurrent part of op

has outputop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0002234

p has output c iff c is a participant in p, c is present at the end of p, and c is not present in the same state at the beginning of p.
has super-properties
has participant op
is inverse of
output of op

has partop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000051

a core relation that holds between a whole and its part

has characteristics: transitive

has super-properties
has part op
has sub-properties
has measurement unit label op, has member op, has occurrent part op, has part op, has value specification op
is inverse of
part of op

has participantop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000057

a relation between a process and a continuant, in which the continuant is somehow involved in the process
has sub-properties
has input op, has output op, has specified input op, has specified output op
has domain
occurrent c
has range
continuant c
is inverse of
participates in op
has sub-property chains
has part op o has participant op

has pressure-volume-temperature data pointop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0009008

A relation that links pressure-volume-temperature data to one recorded pressure, temperature, and specific volume tuple.

has pressure-volume-temperature pressure datumop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0009009

A relation that links a pressure-volume-temperature data point to its pressure value specification.

has pressure-volume-temperature specific volume datumop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0009011

A relation that links a pressure-volume-temperature data point to its specific volume value specification.

has pressure-volume-temperature temperature datumop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0009010

A relation that links a pressure-volume-temperature data point to its temperature value specification.

has qualityop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000086

a relation between an independent continuant (the bearer) and a quality, in which the quality specifically depends on the bearer for its existence
has super-properties
has characteristic op
has range
quality c
is inverse of
quality of op

has realizationop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000054

b has realization c =Def c realizes b
Example
As for realizes
has domain
realizable entity c
has range
process c
is inverse of
realizes op

has recycling batch actorop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0009007

A relation that links a recycling batch to an actor participating in its transfer, treatment, or documentation.
has domain
recycling batch c
has range
supply chain agent c

has relational qualityop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/co/PMD_0025998

a relation between an independent continuant (the bearer) and a relational quality, in which the quality specifically depends on the bearer for its existence
Example
material has relational quality mass proportion m, and portion of iron has the same relational quality mass proportion m
has domain
independent continuant c
has range
relational quality c
is inverse of
relational quality of op
has sub-property chains
has part op o has relational quality op

has roleop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000087

a relation between an independent continuant (the bearer) and a role, in which the role specifically depends on the bearer for its existence
has super-properties
has characteristic op
has domain
independent continuant c
has range
role c
is inverse of
role of op

has selected r-strategyop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0009006

A relation that links circular economy information to the selected circular economy strategy.

has specified inputop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/OBI_0000293

The inverse property of is specified input of
has super-properties
has participant op
has domain
completely executed planned process c
is inverse of
is specified input of op

has specified outputop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/OBI_0000299

The inverse property of is specified output of
has super-properties
has participant op
has domain
completely executed planned process c
is inverse of
is specified output of op

has sustainability informationop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0009003

A relation that links an entity or process to information about sustainability-relevant attributes.
has domain
entity c
has range
sustainability information c

has usage dataop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_0009004

A relation that links a product or component to data recorded during use.
has domain
entity c
has range
usage data c

has value specificationop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/OBI_0001938

A relation between an information content entity and a value specification that specifies its value.
has super-properties
has part op
has domain
information content entity c
has range
value specification c

in response toop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/co/PMD_0001028

inverse of responds with
is inverse of
responds with op

inheres inop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000197

A relation between a specifically dependent continuant and the independent continuant that bears it.

input ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0002352

inverse of has input
has super-properties
participates in op
is inverse of
has input op

is aboutop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000136

A (currently) primitive relation that relates an information artifact to an entity.
has sub-properties
denotes op, is quality measurement of op, specifies value of op
has domain
information content entity c
is inverse of
is subject of op

is concretized asop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000058

A relationship between a generically dependent continuant and a specifically dependent continuant or process, in which the generically dependent continuant depends on some independent continuant or process in virtue of the fact that the specifically dependent continuant or process also depends on that same independent continuant. A generically dependent continuant may be concretized as multiple specifically dependent continuants or processes.

is quality measured asop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000417

inverse of the relation of is quality measurement of
is inverse of
is quality measurement of op

is quality measurement ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000221

m is a quality measurement of q at t. When q is a quality, there is a measurement process p that has specified output m, a measurement datum, that is about q
has super-properties
is about op
has domain
measurement datum c
is inverse of
is quality measured as op

is specified input ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/OBI_0000295

A relation between a completely executed planned process and a continuant participating in that process that is not created during the process. The presence of the continuant during the process is explicitly specified in the plan specification which the process realizes the concretization of.
has super-properties
participates in op
has range
completely executed planned process c
is inverse of
has specified input op

is specified output ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/OBI_0000312

A relation between a completely executed planned process and a continuant participating in that process. The presence of the continuant at the end of the process is explicitly specified in the objective specification which the process realizes the concretization of.
has super-properties
participates in op
has range
completely executed planned process c
is inverse of
has specified output op

is subject ofop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/co/PMD_0000004

Inverse of 'is about'.
has sub-properties
specified by value op
is inverse of
is about op

last instant ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000223

t last instant of t' =Def t is a temporal instant & t' is a temporal region & all temporal parts of t' other than t precede t
Example
Last midnight is the last instant of yesterday
has domain
temporal instant c
has range
temporal region c
is inverse of
has last instant op

located inop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0001025

a relation between two independent continuants, the target and the location, in which the target is entirely within the location

has characteristics: transitive

has domain
independent continuant c
independent continuant c and (not (spatial region c))
has range
independent continuant c
independent continuant c and (not (spatial region c))
is inverse of
location of op
has sub-property chains
located in op o part of op

location ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0001015

a relation between two independent continuants, the location and the target, in which the target is entirely within the location

has characteristics: transitive

is inverse of
located in op

member ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0002350

is member of is a mereological relation between a item and a collection.
has super-properties
part of op
is inverse of
has member op

occupies temporal regionop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000199

p occupies temporal region t =Def p is a process or process boundary & the spatiotemporal region occupied by p temporally projects onto t
Example
The Second World War occupies the temporal region September 1, 1939 - September 2, 1945

has characteristics: functional

has domain
process c or process boundary c
has range
temporal region c

occurrent part ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000132

(Elucidation) occurrent part of is a relation between occurrents b and c when b is part of c
Example
Mary's 5th birthday is an occurrent part of Mary's life; the first set of the tennis match is an occurrent part of the tennis match

has characteristics: transitive

has super-properties
part of op
has domain
occurrent c
has range
occurrent c
is inverse of
has occurrent part op

occurs inop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000066

b occurs in c =Def b is a process or a process boundary & c is a material entity or site & there exists a spatiotemporal region r & b occupies spatiotemporal region r & for all time t, if b exists at t then c exists at t & there exist spatial regions s and s' where b spatially projects onto s at t & c occupies spatial region s' at t & s is a continuant part of s' at t
Example
A process of digestion occurs in the interior of an organism; a process of loading artillery rounds into a tank cannon occurs in the interior of the tank
has domain
process c or process boundary c
has range
site c or material entity c

output ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0002353

inverse of has output
has super-properties
participates in op
is inverse of
has output op

ownsop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/log/LOG_1900003

relationship from a person or business organization to an independent continuant when the agent holds the independent continuant as legal property
has super-properties
top Object Property op
has domain
person c or business organization c
has range
independent continuant c

part ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000050

a core relation that holds between a part and its whole

has characteristics: transitive

has sub-properties
member of op, occurrent part of op
is inverse of
has part op

participates inop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000056

a relation between a continuant and a process, in which the continuant is somehow involved in the process
has sub-properties
input of op, is specified input of op, is specified output of op, output of op
has domain
continuant c
has range
occurrent c
is inverse of
has participant op

quality ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000080

a relation between a quality and an independent continuant (the bearer), in which the quality specifically depends on the bearer for its existence
This relation is modeled after the BFO relation of the same name which was in BFO2, but is used in a more restricted sense - specifically, we model this relation as functional (inherited from characteristic-of). Note that this relation is now removed from BFO2020.
has super-properties
characteristic of op
has domain
quality c and (not (relational quality c))
is inverse of
has quality op

realizesop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/BFO_0000055

Paraphrase of elucidation: a relation between a process and a realizable entity, where there is some material entity that is bearer of the realizable entity and participates in the process, and the realizable entity comes to be realized in the course of the process
(Elucidation) realizes is a relation between a process b and realizable entity c such that c inheres in some d & for all t, if b has participant d then c exists & the type instantiated by b is correlated with the type instantiated by c
Example
A balding process realizes a disposition to go bald; a studying process realizes a student role; a process of pumping blood realizes the pumping function of a heart
has domain
process c
has range
realizable entity c
is inverse of
has realization op

relational quality ofop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/co/PMD_0025999

a relation between a relational quality and an independent continuant (the bearer), in which the quality specifically depends on the bearer for its existence
Example
mass proportion m is relational qualitiy of material, and the same mass proportion m is relational qualitiy of portion of iron
is inverse of
has relational quality op
has sub-property chains
relational quality of op o part of op

responds withop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/co/PMD_0001029

The realizable entity must be "stimulated" by some Stimulus in order to respond with the Response. The bearer of the realizable entity must participate in Stimulation as well as in Response.
has domain
realizable entity c
is inverse of
in response to op

role ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/RO_0000081

a relation between a role and an independent continuant (the bearer), in which the role specifically depends on the bearer for its existence
This relation is modeled after the BFO relation of the same name which was in BFO2, but is used in a more restricted sense - specifically, we model this relation as functional (inherited from characteristic-of). Note that this relation is now removed from BFO2020.
has super-properties
characteristic of op
is inverse of
has role op

specified by valueop back to ToC or Object Property ToC

IRI: https://w3id.org/pmd/co/PMD_0000077

A relation between an entity and a value specification which is about this entity.
has super-properties
is subject of op
is inverse of
specifies value of op

specifies value ofop back to ToC or Object Property ToC

IRI: http://purl.obolibrary.org/obo/OBI_0001927

A relation between a value specification and an entity which the specification is about.
has super-properties
is about op
has domain
value specification c
is inverse of
specified by value op

Data Properties

has specified numeric valuedp back to ToC or Data Property ToC

IRI: http://purl.obolibrary.org/obo/OBI_0001937

A relation between a value specification and a number that quantifies it.
has super-properties
has specified value dp
has domain
value specification c

has specified valuedp back to ToC or Data Property ToC

IRI: http://purl.obolibrary.org/obo/OBI_0002135

A relation between a value specification and a literal.
has sub-properties
has specified numeric value dp
has domain
value specification c

Annotation Properties

abbreviationap back to ToC or Annotation Property ToC

IRI: https://w3id.org/pmd/co/PMD_0050117

A textual annotation used to specify a commonly accepted abbreviation, acronym, or shortened form of a class label. This property is intended to support concise referencing of ontology classes, especially when standard abbreviations are widely used in practice.
Example
"DNA" for "Deoxyribonucleic Acid"

alt Labelap back to ToC or Annotation Property ToC

IRI: http://www.w3.org/2004/02/skos/core#altLabel

broaderap back to ToC or Annotation Property ToC

IRI: http://www.w3.org/2004/02/skos/core#broader

commentap back to ToC or Annotation Property ToC

IRI: http://www.w3.org/2000/01/rdf-schema#comment

contributorap back to ToC or Annotation Property ToC

IRI: http://purl.org/dc/elements/1.1/contributor

contributorap back to ToC or Annotation Property ToC

IRI: http://purl.org/dc/terms/contributor

creatorap back to ToC or Annotation Property ToC

IRI: http://purl.org/dc/elements/1.1/creator

creatorap back to ToC or Annotation Property ToC

IRI: http://purl.org/dc/terms/creator

dcterms:licenseap back to ToC or Annotation Property ToC

IRI: http://purl.org/dc/terms/license

definitionap back to ToC or Annotation Property ToC

IRI: http://purl.obolibrary.org/obo/IAO_0000115

The official OBI definition, explaining the meaning of a class or property. Shall be Aristotelian, formalized and normalized. Can be augmented with colloquial definitions.

definitionap back to ToC or Annotation Property ToC

IRI: http://www.w3.org/2004/02/skos/core#definition

deprecatedap back to ToC or Annotation Property ToC

IRI: http://www.w3.org/2002/07/owl#deprecated

descriptionap back to ToC or Annotation Property ToC

IRI: http://purl.org/dc/elements/1.1/description

descriptionap back to ToC or Annotation Property ToC

IRI: http://purl.org/dc/terms/description

exampleap back to ToC or Annotation Property ToC

IRI: http://www.w3.org/2004/02/skos/core#example

in Schemeap back to ToC or Annotation Property ToC

IRI: http://www.w3.org/2004/02/skos/core#inScheme

labelap back to ToC or Annotation Property ToC

IRI: http://www.w3.org/2000/01/rdf-schema#label

licenseap back to ToC or Annotation Property ToC

IRI: http://purl.org/dc/elements/1.1/license

notationap back to ToC or Annotation Property ToC

IRI: http://www.w3.org/2004/02/skos/core#notation

Sourceap back to ToC or Annotation Property ToC

IRI: http://purl.org/dc/elements/1.1/source

A reference to a resource from which the present resource is derived.

titleap back to ToC or Annotation Property ToC

IRI: http://purl.org/dc/elements/1.1/title

titleap back to ToC or Annotation Property ToC

IRI: http://purl.org/dc/terms/title

top Concept Ofap back to ToC or Annotation Property ToC

IRI: http://www.w3.org/2004/02/skos/core#topConceptOf

Named Individuals

1. steel and iron materialsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060001

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "1. Stahl- und Eisenwerkstoffe"@de
in Scheme ap VDA 231-106 material classification ni
notation ap "1"
top Concept Of ap VDA 231-106 material classification ni

1.1 steels / cast steel / sintered steelni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060011

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "1.1 Stähle / Stahlguss / Sinterstahl"@de
broader ap 1. steel and iron materials ni
in Scheme ap VDA 231-106 material classification ni
notation ap "1.1"

1.1.1 unalloyed, low alloyedni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060111

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "1.1.1 unlegiert, niedriglegiert"@de
broader ap 1.1 steels / cast steel / sintered steel ni
in Scheme ap VDA 231-106 material classification ni
notation ap "1.1.1"

1.1.2 highly alloyedni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060112

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "1.1.2 hochlegiert"@de
broader ap 1.1 steels / cast steel / sintered steel ni
in Scheme ap VDA 231-106 material classification ni
notation ap "1.1.2"

1.2 cast ironni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060012

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "1.2 Gusseisen"@de
broader ap 1. steel and iron materials ni
in Scheme ap VDA 231-106 material classification ni
notation ap "1.2"

1.2.1 cast iron with lamellar graphite / tempered cast ironni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060121

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "1.2.1 Gusseisen mit Lamellengraphit / Temperguss"@de
broader ap 1.2 cast iron ni
in Scheme ap VDA 231-106 material classification ni
notation ap "1.2.1"

1.2.2 cast iron with nodular graphite / vermicular cast ironni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060122

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "1.2.2 Gusseisen mit Kugelgraphit / Vermiculargusseisen"@de
broader ap 1.2 cast iron ni
in Scheme ap VDA 231-106 material classification ni
notation ap "1.2.2"

1.2.3 highly alloyed cast ironni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060123

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "1.2.3 hochlegiertes Gusseisen"@de
broader ap 1.2 cast iron ni
in Scheme ap VDA 231-106 material classification ni
notation ap "1.2.3"

2. light alloys, cast and wrought alloysni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060002

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "2. Leichtmetalle, Guss- und Knetlegierungen"@de
in Scheme ap VDA 231-106 material classification ni
notation ap "2"
top Concept Of ap VDA 231-106 material classification ni

2.1 aluminium and aluminium alloysni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060021

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "2.1 Aluminium und Aluminiumlegierungen"@de
broader ap 2. light alloys, cast and wrought alloys ni
in Scheme ap VDA 231-106 material classification ni
notation ap "2.1"

2.1.1 cast aluminium alloysni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060211

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "2.1.1 Gussaluminiumlegierungen"@de
broader ap 2.1 aluminium and aluminium alloys ni
in Scheme ap VDA 231-106 material classification ni
notation ap "2.1.1"

2.1.2 wrought aluminium alloysni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060212

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "2.1.2 Knetaluminiumlegierungen"@de
broader ap 2.1 aluminium and aluminium alloys ni
in Scheme ap VDA 231-106 material classification ni
notation ap "2.1.2"

2.2 magnesium and magnesium alloysni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060022

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "2.2 Magnesium und Magnesiumlegierungen"@de
broader ap 2. light alloys, cast and wrought alloys ni
in Scheme ap VDA 231-106 material classification ni
notation ap "2.2"

2.2.1 cast magnesium alloysni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060221

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "2.2.1 Gussmagnesiumlegierungen"@de
broader ap 2.2 magnesium and magnesium alloys ni
in Scheme ap VDA 231-106 material classification ni
notation ap "2.2.1"

2.2.2 wrought magnesium alloysni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060222

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "2.2.2 Knetmagnesiumlegierungen"@de
broader ap 2.2 magnesium and magnesium alloys ni
in Scheme ap VDA 231-106 material classification ni
notation ap "2.2.2"

2.3 titanium and titanium alloysni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060023

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "2.3 Titan und Titanlegierungen"@de
broader ap 2. light alloys, cast and wrought alloys ni
in Scheme ap VDA 231-106 material classification ni
notation ap "2.3"

3. nonferrous heavy metals, cast and wrought alloysni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060003

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "3. Buntmetalle, Guss- und Knetlegierungen"@de
in Scheme ap VDA 231-106 material classification ni
notation ap "3"
top Concept Of ap VDA 231-106 material classification ni

3.1 copperni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060031

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "3.1 Kupfer"@de
alt Label ap "3.1 copper (e.g. copper in cable harnesses)"@en
broader ap 3. nonferrous heavy metals, cast and wrought alloys ni
in Scheme ap VDA 231-106 material classification ni
notation ap "3.1"

3.2 copper alloysni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060032

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "3.2 Kupferlegierungen"@de
broader ap 3. nonferrous heavy metals, cast and wrought alloys ni
in Scheme ap VDA 231-106 material classification ni
notation ap "3.2"

3.3 zinc alloysni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060033

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "3.3 Zinklegierungen"@de
alt Label ap "3.3 yinc alloys"@en
broader ap 3. nonferrous heavy metals, cast and wrought alloys ni
in Scheme ap VDA 231-106 material classification ni
notation ap "3.3"

3.4 nickel alloysni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060034

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "3.4 Nickellegierungen"@de
broader ap 3. nonferrous heavy metals, cast and wrought alloys ni
in Scheme ap VDA 231-106 material classification ni
notation ap "3.4"

3.5 leadni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060035

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "3.5 Blei"@de
broader ap 3. nonferrous heavy metals, cast and wrought alloys ni
in Scheme ap VDA 231-106 material classification ni
notation ap "3.5"

4. special metalsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060004

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "4. Sondermetalle"@de
in Scheme ap VDA 231-106 material classification ni
notation ap "4"
top Concept Of ap VDA 231-106 material classification ni

4.1 platinum / rhodiumni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060041

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "4.1 Platin / Rhodium"@de
broader ap 4. special metals ni
in Scheme ap VDA 231-106 material classification ni
notation ap "4.1"

4.2 other special metalsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060042

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "4.2 andere Sondermetalle"@de
alt Label ap "4.2 others"@en
broader ap 4. special metals ni
in Scheme ap VDA 231-106 material classification ni
notation ap "4.2"

5. polymer materialsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060005

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "5. Polymere Werkstoffe"@de
in Scheme ap VDA 231-106 material classification ni
notation ap "5"
top Concept Of ap VDA 231-106 material classification ni

5.1 thermoplastics (filled / unfilled)ni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060051

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "5.1 Thermoplaste (gefüllt / ungefüllt)"@de
broader ap 5. polymer materials ni
in Scheme ap VDA 231-106 material classification ni
notation ap "5.1"

5.2 thermoplastic elastomersni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060052

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "5.2 thermoplastische Elastomere"@de
broader ap 5. polymer materials ni
in Scheme ap VDA 231-106 material classification ni
notation ap "5.2"

5.3 elastomers / elastomeric compoundsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060053

belongs to
information content entity c
Concept c
has facts
alt Label ap "5.3 Elastomere / Elastomer-Verbunde"@de
broader ap 5. polymer materials ni
in Scheme ap VDA 231-106 material classification ni
notation ap "5.3"

5.4 duromersni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060054

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "5.4 Duroplaste"@de
broader ap 5. polymer materials ni
in Scheme ap VDA 231-106 material classification ni
notation ap "5.4"

5.4.1 polyurethaneni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060541

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "5.4.1 Polyurethan"@de
broader ap 5.4 duromers ni
in Scheme ap VDA 231-106 material classification ni
notation ap "5.4.1"

5.4.2 unsaturated polyesterni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060542

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "5.4.2 ungesättigter Polyester"@de
broader ap 5.4 duromers ni
in Scheme ap VDA 231-106 material classification ni
notation ap "5.4.2"

5.4.3 other duromersni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060543

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "5.4.3 andere Duroplaste"@de
alt Label ap "5.4.3 others"@en
broader ap 5.4 duromers ni
in Scheme ap VDA 231-106 material classification ni
notation ap "5.4.3"

5.5 polymeric compoundsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060055

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "5.5 Polymerverbunde"@de
alt Label ap "5.5 polymeric compounds (e.g. inseparable laminated trim parts)"@en
broader ap 5. polymer materials ni
in Scheme ap VDA 231-106 material classification ni
notation ap "5.5"

5.5.1 plasticsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060551

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "5.5.1 Kunststoffe"@de
broader ap 5.5 polymeric compounds ni
in Scheme ap VDA 231-106 material classification ni
notation ap "5.5.1"

5.5.2 textilesni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060552

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "5.5.2 Textilien"@de
broader ap 5.5 polymeric compounds ni
in Scheme ap VDA 231-106 material classification ni
notation ap "5.5.2"

6. process polymersni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060006

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "6. Prozesspolymere"@de
in Scheme ap VDA 231-106 material classification ni
notation ap "6"
top Concept Of ap VDA 231-106 material classification ni

6.1 lacquersni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060061

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "6.1 Lacke"@de
broader ap 6. process polymers ni
in Scheme ap VDA 231-106 material classification ni
notation ap "6.1"

6.2 adhesives, sealantsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060062

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "6.2 Klebstoffe, Dichtmassen"@de
broader ap 6. process polymers ni
in Scheme ap VDA 231-106 material classification ni
notation ap "6.2"

6.3 undersealni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060063

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "6.3 Unterbodenschutz"@de
broader ap 6. process polymers ni
in Scheme ap VDA 231-106 material classification ni
notation ap "6.3"

7. other materials and material compoundsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060007

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "7. sonstige Werkstoffe und Werkstoffverbunde"@de
in Scheme ap VDA 231-106 material classification ni
notation ap "7"
top Concept Of ap VDA 231-106 material classification ni

7.1 modified organic natural materialsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060071

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "7.1 modified organic natural materials (e.g. leather, wood, cardboard, cotton fleece)"@en
alt Label ap "7.1 modifizierte organische Naturwerkstoffe"@de
broader ap 7. other materials and material compounds ni
in Scheme ap VDA 231-106 material classification ni
notation ap "7.1"

7.2 ceramics / glassni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060072

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "7.2 Keramik / Glas"@de
broader ap 7. other materials and material compounds ni
in Scheme ap VDA 231-106 material classification ni
notation ap "7.2"

7.3 other compoundsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060073

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "7.3 andere Verbunde"@de
alt Label ap "7.3 other compounds (e.g. friction linings)"@en
broader ap 7. other materials and material compounds ni
in Scheme ap VDA 231-106 material classification ni
notation ap "7.3"

8. electronics / electricsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060008

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "8. Elektronik / Elektrik"@de
in Scheme ap VDA 231-106 material classification ni
notation ap "8"
top Concept Of ap VDA 231-106 material classification ni

8.1 electronicsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060081

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "8.1 Elektronik"@de
alt Label ap "8.1 electronics (e.g. PC boards, displays)"@en
broader ap 8. electronics / electrics ni
in Scheme ap VDA 231-106 material classification ni
notation ap "8.1"

8.2 electricsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060082

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "8.2 Elektrik"@de
broader ap 8. electronics / electrics ni
in Scheme ap VDA 231-106 material classification ni
notation ap "8.2"

9. fuels and auxiliary meansni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060009

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "9. Kraftstoffe und Hilfsstoffe"@de
in Scheme ap VDA 231-106 material classification ni
notation ap "9"
top Concept Of ap VDA 231-106 material classification ni

9.1 fuelsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060091

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "9.1 Kraftstoffe"@de
broader ap 9. fuels and auxiliary means ni
in Scheme ap VDA 231-106 material classification ni
notation ap "9.1"

9.2 lubricantsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060092

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "9.2 Schmierstoffe"@de
broader ap 9. fuels and auxiliary means ni
in Scheme ap VDA 231-106 material classification ni
notation ap "9.2"

9.3 brake fluidni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060093

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "9.3 Bremsflüssigkeit"@de
broader ap 9. fuels and auxiliary means ni
in Scheme ap VDA 231-106 material classification ni
notation ap "9.3"

9.4 coolant / other glycolsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060094

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "9.4 Kühlmittel / andere Glykole"@de
broader ap 9. fuels and auxiliary means ni
in Scheme ap VDA 231-106 material classification ni
notation ap "9.4"

9.5 refrigerantni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060095

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "9.5 Kältemittel"@de
broader ap 9. fuels and auxiliary means ni
in Scheme ap VDA 231-106 material classification ni
notation ap "9.5"

9.6 washing water, battery acidsni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060096

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "9.6 Waschwasser, Batteriesäuren"@de
broader ap 9. fuels and auxiliary means ni
in Scheme ap VDA 231-106 material classification ni
notation ap "9.6"

9.7 preservativeni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060097

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "9.7 Konservierungsmittel"@de
broader ap 9. fuels and auxiliary means ni
in Scheme ap VDA 231-106 material classification ni
notation ap "9.7"

9.8 other fuels and auxiliary meansni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060098

belongs to
generically dependent continuant c
information content entity c
Concept c
has facts
alt Label ap "9.8 andere Kraftstoffe und Hilfsstoffe"@de
broader ap 9. fuels and auxiliary means ni
in Scheme ap VDA 231-106 material classification ni
notation ap "9.8"

aggregate state atom gasni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020121

A gaseous state where the gas entities are atoms.

aggregate state gaseousni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020119

A state where the entities have no bonding.

aggregate state liquidni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020118

A state where the bonds of the entities transmit no shear force.

aggregate state mesomorphicni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020123

A state where some bonds transmit shear stresses and some do not.

aggregate state plasmani back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020120

An aggregate state where the entities are atom nuclei and have no bonds.

aggregate state solidni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020117

A state where the bonds between entities transmit shear forces.

aggregate state supercritical fluidni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020122

A state with strong bindings between entities that do not transmit shear force.

aggregate state suprafluidni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020124

A state with frictionless binding that transmits no shear force between entities.

aggregate state suprasolidni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020125

A state that exhibits suprafluid and solid properties.

austeniteni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020097

bainiteni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020027

bravais lattice cubic body-centeredni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020018

bravais lattice cubic face-centeredni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020019

bravais lattice cubic primitiveni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020017

bravais lattice hexagonal hexagonal primitiveni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020016

bravais lattice hexagonal rhombohedral primitiveni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020015

bravais lattice monoclinic base-centeredni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020008

bravais lattice monoclinic primitiveni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020007

bravais lattice orthorhombic base-centeredni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020010

bravais lattice orthorhombic body-centeredni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020011

bravais lattice orthorhombic face-centeredni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020012

bravais lattice orthorombic primitiveni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020009

bravais lattice tetragonal body-centeredni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020014

bravais lattice tetragonal primitiveni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020013

bravais lattice triclinic primitiveni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020006

ferriteni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020100

ledeburiteni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020107

long range orderni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020219

periodic arrangement of structural features of virtually all entities

martensiteni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020111

medium range orderni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020218

periodic arrangement of structural features of many entities

no range orderni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020242

no periodic arrangement of structural features of entites

pearliteni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020109

short range orderni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020217

periodic arrangement of structural features up to a few entities

VDA 231-106 material classificationni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/automatce/AUTOMATCE_1060056

Standardized material classification system used in the German automotive industry.
belongs to
information content entity c
Concept Scheme c

widmanstatten structureni back to ToC or Named Individual ToC

IRI: https://w3id.org/pmd/co/PMD_0020110

SWRL rules

Rule #1back to ToC or SWRL ToC

has characteristic op(?e,?d) , disposition c(?d) -> has disposition op(?e,?d)

Rule #2back to ToC or SWRL ToC

has characteristic op(?e,?d) , quality c(?d) -> has quality op(?e,?d)

Rule #3back to ToC or SWRL ToC

has characteristic op(?e,?d) , role c(?d) -> has role op(?e,?d)

Rule #4back to ToC or SWRL ToC

has characteristic op(?e,?d) , function c(?d) -> has function op(?e,?d)

Legend back to ToC

c: Classes
op: Object Properties
dp: Data Properties
ni: Named Individuals

Acknowledgments back to ToC

The authors would like to thank Silvio Peroni for developing LODE, a Live OWL Documentation Environment, which is used for representing the Cross Referencing Section of this document and Daniel Garijo for developing Widoco, the program used to create the template used in this documentation.