• 专利标题:   Producing graphene carbon slide plate involves using graphene microchips, mesh roasted, mesh roast crush and asphalt gum, graphene flake, mesh roasting, mesh roasting and asphalt binder are graphene microplates into asphalt rubber.
  • 专利号:   CN107805070-A
  • 发明人:   ZHANG G
  • 专利权人:   DATONG XINCHENG NEW MATERIAL CO LTD
  • 国际专利分类:   B60L005/20, C04B035/528, C04B035/622, C04B035/634, C04B041/81
  • 专利详细信息:   CN107805070-A 16 Mar 2018 C04B-035/528 201826 Pages: 6 Chinese
  • 申请详细信息:   CN107805070-A CN11037325 30 Oct 2017
  • 优先权号:   CN11037325

▎ 摘  要

NOVELTY - Producing graphene carbon slide plate involves using graphene microchips, 325 mesh roasted, 60 mesh roasted crushed and asphalt gum, graphene flake, 325 mesh roasting, 60 mesh roasting and asphalt binder are 6-8 wt.% graphene microplates, 47-53 wt.% 325 mesh roasted into 17-19 wt.% 60-bit roasted crushed 24-26 wt.% asphalt rubber. The graphene flakes is dissolved into 325 mesh roasted and 60 mesh roasted and crushed to the mixer, and stirred to obtain mixture. The mixture is mixed with agitated mixture to the kneader. USE - Method for producing graphene carbon slide plate. ADVANTAGE - The method enables to produce graphene carbon slide plate, which has resistance and strong toughness. DETAILED DESCRIPTION - Producing graphene carbon slide plate involves using graphene microchips, 325 mesh roasted, 60 mesh roasted crushed and asphalt gum, graphene flake, 325 mesh roasting, 60 mesh roasting and asphalt binder are 6-8 wt.% graphene microplates, 47-53 wt.% 325 mesh roasted into 17-19 wt.% 60-bit roasted crushed 24-26 wt.% asphalt rubber. The graphene flakes is dissolved into 325 mesh roasted and 60 mesh roasted and crushed to the mixer, and stirred to obtain mixture. The mixture is mixed with agitated mixture to the kneader, and then added the bitumen paste to the kneader, and the kneader performs a kneading process for 40-70 minutes to obtain kneaded material. The obtained kneaded material is processed into a graphene carbon skateboard, and then the graphene carbon skateboard is cooled to room temperature, and finally a calcination process is performed to obtain a sintered graphene carbon skateboard. The preliminary plate of the sintered carbonene carbon skateboard are successively immersed and dried to obtain a graphene carbon slide plate.