Anti-corrosion material, anti-corrosion layer prepared therefrom, and cooking utensil comprising anti-corrosion layer
An anti-corrosion layer and anti-corrosion technology, applied in metal material coating technology, transportation and packaging, special materials for cooking utensils, etc. Corrosion and other problems, to achieve excellent corrosion resistance, improve the effect of service life
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[0033] The method for preparing an anti-corrosion material according to an exemplary embodiment of the inventive concept may include: providing a metal material, a non-metal material, and a binder; preparing the metal material, the non-metal material, and the binder into a slurry; Spray drying treatment, so as to obtain the anti-corrosion material comprising a plurality of anti-corrosion particles.
[0034] According to an exemplary embodiment, the step of providing the metal material, the non-metal material and the binder may include preparing the metal material, the non-metal material and the binder, respectively. The metal material can include at least one of titanium, titanium alloy, stainless steel, nickel and nickel alloy, and the non-metallic material includes titanium oxide, titanium nitride, titanium carbide, ferroferric oxide, iron oxide, aluminum oxide, AT composite material and At least one of silica, and the binder may include at least one of cellulose-based binde...
Embodiment 1
[0058] Titanium particles with a particle size of 50 μm, titanium carbide particles with a particle size of 20 μm, and hydroxymethyl cellulose are provided.
[0059] The titanium particles, titanium carbide particles and hydroxymethyl cellulose were shaped into multiple anti-corrosion particles with a particle size of 80 μm by a granulation process. In the granulation process: mix hydroxymethylcellulose, citric acid, polyether modified silicone oil and deionized water to prepare a slurry, in the slurry, by weight percentage, hydroxymethylcellulose accounts for 3%, Citric acid accounts for 0.8%, polyether modified silicone oil accounts for 1.8%, and the balance is deionized water; titanium particles and titanium particles are mixed with the above-mentioned slurry to prepare a slurry, wherein the addition of titanium particles can account for titanium 48% of the total mass of particles, titanium carbide particles and hydroxymethyl cellulose, the addition of titanium carbide part...
Embodiment 2
[0062] The difference from Example 1 is that the metal material is stainless steel.
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