Antifouling wear-resisting coating for metal surface and preparation method thereof
A metal surface, wear-resistant coating technology, used in antifouling/underwater coatings, alkali metal silicate coatings, anti-corrosion coatings, etc., can solve the problem of poor hardness and wear resistance, easy aging of coating elasticity, surface problems such as high tension, to achieve the effect of improving storage stability, enhancing water resistance, and improving adhesion
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Embodiment 1
[0024] A kind of antifouling wear-resisting coating that is used for metal surface provided by the present invention, every 100g is made up of following weight number components: high modulus potassium silicate 3.2g, lithium silicate 3.6g, the ST- N series of silica sol with a particle size of 3nm is 3.2g, alumina sol is 2.4g, nano-zirconia sol is 1.6g, silicon tripolyphosphate is 1.2g, and the balance is water.
[0025] The preparation method of the high-modulus potassium silicate is as follows: add potassium silicate into a three-necked flask, stir and mix well, and at a temperature of 70°C, slowly and then quickly add silica sol and γ-aminopropyltrimethoxysilane dropwise, Insulated for 3 hours to obtain a particle size of 110nm, a modulus of 5, and a high modulus potassium silicate with a solid content of 40%, the moles of the potassium silicate, silica sol and γ-aminopropyltrimethoxysilane The ratio is 1:1.8:1.2.
Embodiment 2
[0027] Another kind of anti-fouling and wear-resistant paint for metal surfaces provided by the present invention is composed of the following components by weight per 100g: high modulus potassium silicate 9.6g, lithium silicate 2.4g, Nissan Chemical Industry Co., Ltd. ST- C series 4.8g of silica sol with a particle diameter of 3nm and a particle diameter of 15nm, 1.6g of alumina sol, 2.4g of nano-zirconia sol, 0.8g of silicon tripolyphosphate, and the balance is water.
[0028] The preparation method of the high-modulus potassium silicate is as follows: add potassium silicate to a three-necked flask, stir and mix well, at a temperature of 50°C, add silica sol and methyltrimethoxysilane dropwise first slowly and then quickly, and keep warm for 3 hours , to obtain a particle size of 140nm, a modulus of 6, and a solid content of 35% high modulus potassium silicate, the mol ratio of the potassium silicate, silica sol and methyltrimethoxysilane is 1:3.2:0.6 .
Embodiment 3
[0030] Another antifouling and wear-resistant coating for metal surfaces provided by the present invention is composed of the following components by weight per 100g: 4g of high modulus potassium silicate, 3g of lithium silicate, and the FM series particle diameter of Grace is 3nm 4g of silica sol, 2g of alumina sol, 2g of nano-zirconia sol, 1g of silicon tripolyphosphate, and the balance is water.
[0031] The preparation method of the high-modulus potassium silicate is as follows: add potassium silicate to a three-necked flask, stir and mix well, at a temperature of 60°C, slowly and then quickly add silica sol, glycidyltrimethoxysilane and γ- Aminopropyltrimethoxysilane, heat preservation reaction for 3 hours, obtained particle diameter is 12nm, modulus is 6, and solid content is 33% high modulus potassium silicate, described potassium silicate, silica sol, epoxypropylene The molar ratio of trimethoxysilane to γ-aminopropyltrimethoxysilane is 1:2:0.6:0.3.
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