• 专利标题:   Manufacturing products incorporating carbon nanomaterials such as nanotubes, graphene platelets, and other forms of graphene, involves mixing carbon nanomaterials into liquid matrix or matrix curable by physical process.
  • 专利号:   US2020055115-A1
  • 发明人:   CAUDILL C H B
  • 专利权人:   CAUDILL C H B
  • 国际专利分类:   B22F001/00, B22F003/00, B22F003/15, B33Y070/00, C01B032/05, C01B032/152, C01B032/158, C01B032/182, C04B014/02, C08K003/04
  • 专利详细信息:   US2020055115-A1 20 Feb 2020 B22F-001/00 202019 Pages: 11 English
  • 申请详细信息:   US2020055115-A1 US546085 20 Aug 2019
  • 优先权号:   US719991P, US546085

▎ 摘  要

NOVELTY - Manufacturing products incorporating carbon nanomaterials involves mixing carbon nanomaterials into a liquid matrix or a matrix curable by a physical process to generate a graphene-based material and manufacturing a product or product component using the graphene-based material. USE - Method for manufacturing products incorporating carbon nanomaterials such as nanotubes, graphene platelets, and other forms of graphene. ADVANTAGE - The method enables to manufacture products incorporating carbon nanomaterials is helps to improves various properties of the products and product components, such as thermal conductivity, electrical conductivity, or structural properties. DETAILED DESCRIPTION - An INDEPENDENT CLAIM is inlcuded for a product or product component, which comprises carbon nanomaterials in a matrix, where carbon nanomaterials in the matrix have at least one physical property selected from a thermal conductivity that is 10 wt.% greater than that of the matrix without the carbon nanomaterials, an electrical conductivity that is 10 wt.% greater than that of the matrix without the carbon nanomaterials, tensile strength that is 50 wt.% greater than that of the matrix without the carbon nanomaterials, 25 wt.% less matrix material than that of the matrix without the carbon nanomaterials and that provides equivalent performance and/or functionality, when the physical property is the thermal conductivity, the electrical conductivity or the tensile strength, then an amount of the matrix material is less than that of the matrix without the carbon nanomaterials, the thermal conductivity, the electrical conductivity or the amount of the matrix material, then the tensile strength is identical to or greater than that of the matrix without the carbon nanomaterials, the thermal conductivity, the tensile strength or the amount of the matrix material, then the electrical conductivity is identical to or greater than that of the matrix without the carbon nanomaterials, or the electrical conductivity, the tensile strength or the amount of the matrix material, then the thermal conductivity is identical to or greater than that of the matrix without the carbon nanomaterials.