gptkbp:instanceOf
|
patent
|
gptkbp:covers
|
materials science
|
gptkbp:economicImpact
|
high
|
gptkbp:environmentalImpact
|
low
|
gptkbp:evaluates
|
composite material production
|
gptkbp:hasAbstract
|
A method for producing a composite material.
|
gptkbp:hasApplicationNumber
|
09/123,456
|
gptkbp:hasAssignee
|
gptkb:XYZ_Corporation
|
gptkbp:hasCitations
|
Journal_of_Composite_Materials.
|
gptkbp:hasClaim
|
20
|
gptkbp:hasContent
|
gptkb:US_0123506_B1
|
gptkbp:hasCountry
|
gptkb:USA
gptkb:United_States
|
gptkbp:hasDeveloped
|
commercialization
|
gptkbp:hasExaminer
|
Jane_Smith
|
gptkbp:hasFeature
|
paid
|
gptkbp:hasFieldOfUse
|
aerospace
|
gptkbp:hasFilingDate
|
2000-05-12
|
gptkbp:hasImpactOn
|
positive
|
gptkbp:hasInternationalClassification
|
C08L
C08L 23/10
|
gptkbp:hasInventor
|
gptkb:John_Doe
|
gptkbp:hasLegalEvent
|
patent granted
|
gptkbp:hasLegalStatus
|
active
|
gptkbp:hasPatentNumber
|
0123507
|
gptkbp:hasPriorityDate
|
1999-05-12
2025-05-12
|
gptkbp:hasPublications
|
2008-01-15
B1
|
gptkbp:hasRelatedPatent
|
aerospace components
process innovation
non-provisional
|
gptkbp:hasResearchInterest
|
high
material engineering
sustainability.
|
gptkbp:hasSpecialty
|
lightweight
fiber-reinforced composite
|
gptkbp:hasTechnicalField
|
engineering
|
gptkbp:hasTechnology
|
improved strength
ASTM_standards.
|
gptkbp:hasTitle
|
Method for producing a composite material
|
gptkbp:hasTouristAttraction
|
polymer
|
https://www.w3.org/2000/01/rdf-schema#label
|
US 0123507 B1
|
gptkbp:isAssignedTo
|
gptkb:XYZ_Corporation
|
gptkbp:isCitedBy
|
gptkb:US_0123508_B1
|
gptkbp:isCitedIn
|
research papers
|
gptkbp:isFiledIn
|
gptkb:United_States
|
gptkbp:isFiledUnder
|
gptkb:John_Doe
utility patent
|
gptkbp:isGranted
|
true
|
gptkbp:isPartOf
|
US_patent_family
|
gptkbp:isPublishedIn
|
gptkb:USPTO
USPTO database
|
gptkbp:isReferencedBy
|
gptkb:US_0123508_B1
|
gptkbp:isRelatedTo
|
gptkb:US_0123506_B1
|
gptkbp:market
|
automotive industry
|
gptkbp:usesTechnology
|
nanotechnology
|