Wear-resisting and anticorrosive hardware coating and preparation method of wear-resisting and anticorrosive hardware coating
A coating and hardware technology, which is applied in the field of wear-resistant and anti-corrosion hardware coating and its preparation, can solve the problems of poor corrosion resistance, short service life, easy breakage, etc., and achieve excellent corrosion resistance, long service life and simple operation.
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Embodiment 1
[0019] In an embodiment of the present invention, a wear-resistant and anti-corrosion hardware coating comprises the following components in parts by weight: 25 parts of zinc-aluminum alloy powder, 20 parts of nano silicon dioxide, 10 parts of sodium lignosulfonate, benzotriazole 2 parts, 0.1 part of thiodiethylene glycol, 0.1 part of triphenylphosphine, 20 parts of zirconium tetrafluoride, 15 parts of γ-aminopropyl triethoxysilane, 10 parts of phytic acid ester, cellulose acetate 1 part plain, 5 parts ethanol, 80 parts deionized water.
[0020] The particle size of the nano silicon dioxide is 20nm.
[0021] The zinc-aluminum alloy powder is composed of Zn, Al, Mg, and Si, and the mass percentages of each component are: Zn50%, Mg0.4%, Si0.6%, and the balance is Al.
[0022] The preparation method of the wear-resistant and anti-corrosion hardware coating comprises the following steps:
[0023] (1) Weigh each raw material according to the above parts by weight;
[0024] (2) A...
Embodiment 2
[0028] In the embodiment of the present invention, a wear-resistant and anti-corrosion hardware coating comprises the following components in parts by weight: 30 parts of zinc-aluminum alloy powder, 25 parts of nano silicon dioxide, 15 parts of sodium lignosulfonate, benzotriazole 4 parts, 0.3 parts of thiodiethylene glycol, 0.3 parts of triphenylphosphine, 25 parts of zirconium tetrafluoride, 17.5 parts of γ-aminopropyl triethoxysilane, 15 parts of phytic acid ester, cellulose acetate 3 parts of element, 7.5 parts of ethanol, 90 parts of deionized water.
[0029] The particle size of the nano silicon dioxide is 35nm.
[0030] The zinc-aluminum alloy powder is composed of Zn, Al, Mg, and Si, and the mass percentages of each component are: Zn55%, Mg0.6%, Si0.9%, and the balance is Al.
[0031] The preparation method of the wear-resistant and anti-corrosion hardware coating comprises the following steps:
[0032] (1) Weigh each raw material according to the above parts by weig...
Embodiment 3
[0037] In an embodiment of the present invention, a wear-resistant and anti-corrosion hardware coating includes the following components in parts by weight: 35 parts of zinc-aluminum alloy powder, 30 parts of nano-silicon dioxide, 20 parts of sodium lignosulfonate, benzotriazole 6 parts, 0.5 parts of thiodiethylene glycol, 0.5 parts of triphenylphosphine, 30 parts of zirconium tetrafluoride, 20 parts of γ-aminopropyl triethoxysilane, 20 parts of phytic acid ester, cellulose acetate 5 parts plain, 10 parts ethanol, 100 parts deionized water.
[0038] The particle size of the nano silicon dioxide is 50nm.
[0039] The zinc-aluminum alloy powder is composed of Zn, Al, Mg, and Si, and the mass percentages of each component are: Zn60%, Mg0.8%, Si1.2%, and the balance is Al.
[0040] The preparation method of the wear-resistant and anti-corrosion hardware coating comprises the following steps:
[0041] (1) Weigh each raw material according to the above parts by weight;
[0042] (...
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Abstract
Description
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Application Information
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