Composite graphene thermal-insulation anticorrosive armor coating applied to automobiles and preparation method of coating
A composite, graphene technology, used in anti-corrosion coatings, epoxy resin coatings, coatings, etc., can solve problems such as poor heat conduction of the iron plate of the chassis, impact on the driving safety of the vehicle owner, and armor shedding, etc. Adhesion, the effect of preventing drag and bottom friction
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Embodiment 1
[0019] A composite graphene heat-insulating and anti-corrosion armor coating applied to automobiles, comprising the following raw materials in parts by weight: 90-100 parts of epoxy resin, 15-20 parts of deionized water, 15-17 parts of graphene powder, graphene 10-20 parts of dispersion liquid, 3-5 parts of leveling agent, 5-7 parts of wetting and dispersing agent, 35-40 parts of ethanol solvent, 9-11 parts of pigment and filler, 20-25 parts of anionic acrylic emulsion, defoamer 16-18 parts, 8-16 parts of curing agent, 20-36 parts of polyaniline, 10-30 parts of film-forming aid, 12-15 parts of isooctyl ester, 5-8 parts of thickener, dimethyl-rich ester 10-15 parts, 10-15 parts of mold release preservative, 5-10 parts of toughening agent, 15-20 parts of silane coupling agent.
[0020] A preparation method for a composite graphene heat-insulating and anti-corrosion armor coating applied to automobiles, for preparing the described composite graphene heat-insulation and anti-corro...
Embodiment 2
[0025] A composite graphene heat-insulating and anti-corrosion armor coating applied to automobiles, comprising the following raw materials in parts by weight: 90 parts of epoxy resin, 15 parts of deionized water, 15 parts of graphene powder, 10 parts of graphene dispersion, fluid 3 parts of leveling agent, 5 parts of wetting and dispersing agent, 35 parts of ethanol solvent, 9 parts of pigment and filler, 20 parts of anionic acrylic emulsion, 16 parts of defoamer, 8 parts of curing agent, 20 parts of polyaniline, 10 parts of film-forming aid 12 parts, 12 parts of isooctyl ester, 5 parts of thickener, 10 parts of dimethyl-rich ester, 10 parts of mold release preservative, 5 parts of toughening agent, 15 parts of silane coupling agent.
[0026] Its preparation method is consistent with Example 1.
Embodiment 3
[0028] A composite graphene heat-insulating anticorrosion armor coating applied to automobiles, comprising the following raw materials in parts by weight: 95 parts of epoxy resin, 17 parts of deionized water, 16 parts of graphene powder, 15 parts of graphene dispersion, fluid 4 parts of leveling agent, 6 parts of wetting and dispersing agent, 37 parts of ethanol solvent, 10 parts of pigment and filler, 23 parts of anionic acrylic emulsion, 17 parts of defoamer, 11 parts of curing agent, 30 parts of polyaniline, 20 parts of film-forming aid 14 parts, 14 parts of isooctyl ester, 7 parts of thickener, 13 parts of dimethyl fat-rich ester, 13 parts of mold release preservative, 7 parts of toughening agent, 17 parts of silane coupling agent.
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