Anticorrosive paint for electric power grid outdoor box and preparing method of anticorrosive paint
A technology of wear-resistant coatings and cabinets, applied in the field of wear-resistant coatings, can solve the problems of self-cleaning, acid and alkali resistance, corrosion and aging of wear-resistant coatings, and improve electrical conductivity or salt spray resistance , enhance wear resistance, improve the effect of wear resistance
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Embodiment 1
[0019] The wear-resistant coating provided by the present embodiment is made up of the following parts by weight: 36 parts of graphene; 36 parts of polyimide; 36 parts of mesophase carbon microspheres; 36 parts of hexafluorobutyl methacrylate-acrylate copolymer emulsion 36 parts of silicone modified fluorocarbon resin; 36 parts of eucalyptus oil; 6 parts of acrylic acid; 6 parts of 2,4,6-tris(dimethylaminomethyl)phenol; 6 parts of dibutyltin dilaurate; 6 parts of resin; 6 parts of sodium tripolyphosphate; 6 parts of gas phase aluminum oxide; 6 parts of aluminum silicate fiber; 6 parts of triisopropylphenyl phosphate; 6 parts of ammonium carbonate; 6 parts of titanium dioxide; 6 parts of polyvinyl alcohol 6 parts; 6 parts of coagulant; 6 parts of thinner; 6 parts of iron powder; 6 parts of silica sol. Wherein the particle size of the graphene is 30nm.
[0020] The preparation method of the wear-resistant coating of the present embodiment comprises the following steps: (1), car...
Embodiment 2
[0022] The wear-resistant coating provided by the present embodiment is made up of the following parts by weight: 46 parts of graphene; 46 parts of polyimide; 46 parts of mesophase carbon microspheres; 46 parts of hexafluorobutyl methacrylate-acrylate copolymer emulsion 46 parts of silicone modified fluorocarbon resin; 46 parts of eucalyptus oil; 6 parts of acrylic acid; 6 parts of 2,4,6-tris(dimethylaminomethyl)phenol; 6 parts of dibutyltin dilaurate; 6 parts of resin; 6 parts of sodium tripolyphosphate; 6 parts of gas phase aluminum oxide; 6 parts of aluminum silicate fiber; 6 parts of triisopropylphenyl phosphate; 6 parts of ammonium carbonate; 6 parts of titanium dioxide; 6 parts of polyvinyl alcohol 6 parts; 6 parts of coagulant; 6 parts of thinner; 6 parts of iron powder; 6 parts of silica sol. Wherein the particle size of the graphene is 30nm.
[0023] The preparation method of the wear-resistant coating of the present embodiment comprises the following steps: (1), car...
Embodiment 3
[0025] The wear-resistant coating provided by the present embodiment is made up of the following parts by weight: 30 parts of graphene; 30 parts of polyimide; 30 parts of mesophase carbon microspheres; 30 parts of hexafluorobutyl methacrylate-acrylate copolymer emulsion 30 parts of silicone modified fluorocarbon resin; 30 parts of eucalyptus oil; 1 part of acrylic acid; 1 part of 2,4,6-tris(dimethylaminomethyl)phenol; 1 part of dibutyltin dilaurate; 1 part of resin; 1 part of sodium tripolyphosphate; 1 part of gas phase aluminum oxide; 1 part of aluminum silicate fiber; 1 part of triisopropylphenyl phosphate; 1 part of ammonium carbonate; 1 part of titanium dioxide; 1 part of polyvinyl alcohol 1 part; coagulant 1 part; thinner 1 part; iron powder 1 part; silica sol 1 part. Wherein the particle size of the graphene is 40nm.
[0026] The preparation method of the wear-resistant coating of the present embodiment comprises the following steps: (1), carry out batching according to...
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Abstract
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