Acid corrosion-resistant enamel coating on weather-resistant structural steel surface and preparation method thereof
A technology of weather-resistant structural steel and acid corrosion, applied in the field of inorganic protective coatings, can solve the problems of reducing the oxidation resistance of enamel coatings, affecting the corrosion resistance of enamel coatings, reducing the softening point of enamel coatings, etc., to improve chemical stability properties, increase hardness, and increase gloss
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[0025] In a more specific embodiment of the present invention, a method for preparing an acid-corrosion-resistant enamel coating on the surface of weather-resistant structural steel includes: a) melting enamel glaze, b) preparing enamel glaze powder, c) preparing weather-resistant structural steel Surface alkaline degreasing treatment, d) Enamel coating spraying and high temperature firing.
[0026] Wherein, there are two kinds of enamel glazes, which are enamel enamel A and enamel enamel B respectively.
[0027] In a preferred embodiment of the present invention, the concrete steps of the preparation method of the anti-acid corrosion enamel coating on the surface of a kind of weathering structural steel comprise:
[0028] a) Preparation of enamel glaze A: According to the mass fraction, 50 parts of quartz powder, 3 parts of fluorite, 5 parts of sodium nitrate, 12 parts of borax pentahydrate, 8.5 parts of sodium carbonate, 4 parts of lithium carbonate, 5 parts of strontium car...
example 1
[0036] (1) Enamel enamel A: According to the mass fraction, 50 parts of quartz powder, 3 parts of fluorite, 5 parts of sodium nitrate, 12 parts of borax pentahydrate, 8.5 parts of sodium carbonate, 4 parts of lithium carbonate, 5 parts of strontium carbonate, 3 parts of titanium oxide, Mix 2 parts of barium carbonate, 4 parts of calcium carbonate, 2 parts of cobalt oxide, and 1.5 parts of nickel oxide to obtain the batch material, and then melt the obtained batch material in a silicon-molybdenum rod high-temperature electric furnace at a temperature of 1300 ° C for 2.5 hours, pass through water Quenching to obtain enamel glaze A.
[0037] Enamel glaze B: According to the mass fraction, 47 parts of quartz powder, 3 parts of fluorite, 5 parts of sodium nitrate, 10 parts of borax pentahydrate, 12.5 parts of sodium carbonate, 4 parts of lithium carbonate, 6 parts of strontium carbonate, 3 parts of titanium oxide, carbonic acid 2 parts of barium, 3 parts of calcium carbonate, 2.5 p...
example 2
[0043] (1) Enamel enamel A: According to the mass fraction, 50 parts of quartz powder, 3 parts of fluorite, 5 parts of sodium nitrate, 12 parts of borax pentahydrate, 8.5 parts of sodium carbonate, 4 parts of lithium carbonate, 5 parts of strontium carbonate, 3 parts of titanium oxide, Mix 2 parts of barium carbonate, 4 parts of calcium carbonate, 2 parts of cobalt oxide, and 1.5 parts of nickel oxide to obtain the batch material, and then melt the obtained batch material in a silicon-molybdenum rod high-temperature electric furnace at a temperature of 1300 ° C for 2.5 hours, pass through water Quenching to obtain enamel glaze A.
[0044] Enamel glaze B: According to the mass fraction, 47 parts of quartz powder, 3 parts of fluorite, 5 parts of sodium nitrate, 10 parts of borax pentahydrate, 12.5 parts of sodium carbonate, 4 parts of lithium carbonate, 6 parts of strontium carbonate, 3 parts of titanium oxide, carbonic acid 2 parts of barium, 3 parts of calcium carbonate, 2.5 p...
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