Graphene electricity and heat conductive coating and preparation method thereof
A technology of electrical and thermal conductivity and graphene, applied in the field of materials, can solve the problems of low electrical and thermal conductivity, poor bonding performance between coatings and substrates, and low service life, and achieves good corrosion resistance, high bonding strength, and good anti-rust performance. Effect
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Embodiment 1
[0047] The graphene conductive and thermally conductive coating described in this embodiment is composed of the following components in parts by weight: 1 part of graphene, 2 parts of carbon nanotubes, 2 parts of sodium silicate, 1 part of varnish oil, 1 part of tung oil, and 0.3 part of maleic anhydride , 3 parts of sodium lignosulfonate dispersant, 1 part of acrylic resin, 0.05 part of cobalt drier, 1 part of silane coupling agent, 0.2 part of silicon dioxide, 0.2 part of compound additive ethylene glycol, 0.5 part of lignocellulose , 1.5 parts of zeolite powder, 1 part of thermal conductive metal silver powder, 40 parts of 60% ethanol.
[0048] A method for preparing graphene conductive and thermally conductive coatings, specifically comprising the following steps:
[0049] (1) Add lacquer oil, tung oil, maleic anhydride, and acrylic resin respectively and heat to 65°C, 500r / min, stir evenly, for 20min, keep warm for later use;
[0050] (2) Mix graphene, carbon nanotubes, ...
Embodiment 2
[0055] The graphene conductive and thermally conductive coating described in this embodiment is made up of the following components in parts by weight: 10 parts of graphene, 5 parts of carbon nanotubes, 5 parts of sodium silicate, 3 parts of lacquer oil, 3 parts of tung oil, and 1.5 parts of maleic anhydride , 5 parts of sodium lauryl sulfate as a dispersant, 3 parts of acrylic resin, 0.5 parts of zinc drier, 3 parts of titanate coupling agent, 1 part of silicon dioxide, 1 part of compound additive 1,2-propylene glycol, 2 parts of hydroxypropyl methylcellulose, 2 parts of zeolite powder, 8 parts of heat-conducting metal copper powder, 60 parts of 80% ethanol.
[0056] A method for preparing graphene conductive and thermally conductive coatings, specifically comprising the following steps:
[0057] (1) Add lacquer oil, tung oil, maleic anhydride, and acrylic resin respectively and heat to 75°C, 1000r / min, stir evenly, for 40min, keep warm for later use;
[0058] (2) Mix graphe...
Embodiment 3
[0063] The graphene conductive and thermally conductive coating described in this embodiment is made up of the following components in parts by weight: 5 parts of graphene, 3 parts of carbon nanotubes, 3 parts of sodium silicate, 2 parts of lacquer oil, 2 parts of tung oil, and 1 part of maleic anhydride , 4 parts of dispersant (sodium lignosulfonate, sodium lauryl sulfate, mass ratio 3:1), 2 parts of acrylic resin, composite drier (cobalt drier, zinc drier, mass ratio 1: 1) 0.2 parts, 2 parts of silane coupling agent, 0.6 parts of silicon dioxide, 0.6 parts of compound additive 1,3-propanediol, 1.3 parts of sodium carboxymethyl cellulose, 1.8 parts of zeolite powder, 4 parts of thermal conductive metal aluminum powder, 50 parts of 70% ethanol.
[0064] A method for preparing graphene conductive and thermally conductive coatings, specifically comprising the following steps:
[0065] (1) Add lacquer oil, tung oil, maleic anhydride, and acrylic resin respectively and heat to 70...
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