Nano-inorganic zinc-rich composite anti-corrosion coating and preparation method thereof
A nano-inorganic and anti-corrosion coating technology, which is applied in the direction of anti-corrosion coatings, alkali metal silicate coatings, coatings, etc., can solve the problems affecting the anti-corrosion performance and comprehensive mechanical properties of inorganic zinc-rich coatings, and the coating's anti-scratch corrosion resistance. High and restrict the wide application of coatings, etc., to achieve the effects of easy industrialized mass production, improved scratch corrosion resistance, and strong binding force
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[0043] And in a more specific preferred implementation case, the preparation method of described nano-modified polyaniline can comprise:
[0044] Under the condition that the stirring speed is not lower than 1000 rev / min, the nano-attapulgite and aniline with a diameter of 20nm to 50nm and a length of 0.5μm to 3μm are added to water and mixed to form a suspension.
[0045] Under the condition of continuous stirring, add a surface modifier and a dopant to the suspension, and then slowly add an oxidant, filter after the reaction, take the filtrate to wash and dry, and obtain the nano-modified polyaniline.
[0046] Wherein, the surface modifier may be at least selected from cetyltrimethylammonium bromide or dodecyltrimethylammonium bromide, and is not limited thereto.
[0047]Wherein, the dopant may be at least selected from camphorsulfonic acid or sulfosalicylic acid, and is not limited thereto.
[0048] Wherein, the oxidizing agent may be ammonium persulfate, but is not limite...
Embodiment 1
[0069] 1) Take 85 grams of potassium silicate-sodium silicate solution with a modulus of 3.5, add 13 grams of pure acrylic emulsion, 2 grams of wetting and dispersing agent and 1 gram of defoamer, stir to make it completely dispersed, and make Group A Minute;
[0070] 2) Add 8 grams of nano-modified polyaniline to the above-mentioned component A solution, stir for 1.5 hours at 1000 rpm to disperse the nano-modified polyaniline evenly in the liquid, and finally add 292 grams of 500-mesh flake zinc powder, the mass ratio of component A and component B is 1:3, and keep stirring for 30 minutes to obtain nano inorganic zinc-rich composite anticorrosion coating.
[0071] The nano inorganic zinc-rich composite anti-corrosion paint of this embodiment was sprayed on the tinplate substrate treated with sandpaper and the iron plate treated with sandblasting by high-pressure air spraying. After being completely cured, the coating film sample Y1 was obtained. Reserved for performance eva...
Embodiment 2
[0073] 1) Take 80 grams of potassium silicate solution with a modulus of 4.0, add 14 grams of styrene-acrylic emulsion, 2.5 grams of wetting and dispersing agent and 1.5 grams of defoamer, stir to make it completely dispersed, and make component A.
[0074] 2) Add 10 grams of nano-modified polyaniline to the above-mentioned component A solution, stir for 1.5 hours at 1000 rpm to disperse the nano-modified polyaniline evenly in the liquid, and finally add 290 grams of 600-mesh flake zinc powder, the mass ratio of component A and component B is 1:3, and keep stirring for 30 minutes to obtain nano inorganic zinc-rich composite anticorrosion coating.
[0075] The nano inorganic zinc-rich composite anti-corrosion paint of this embodiment was sprayed on the tinplate substrate treated with sandpaper and the iron plate treated with sandblasting by high-pressure air spraying. After being completely cured, the coating film sample Y2 was obtained. Reserved for performance evaluation tes...
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