Antistatic coating for heat sublimation transfer printing
An antistatic and thermal sublimation technology, applied in coatings, conductive coatings, etc., can solve problems such as low surface resistance, poor antistatic performance, and affect transfer quality, achieve good wear resistance, improve antistatic ability, and superior The effect of antistatic ability
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Embodiment 1
[0017] The proportion of ingredients used is: 15 parts of carboxymethyl cellulose, 4 parts of nano titanium dioxide powder, 8 parts of superfine tin antimony oxide powder, 10 parts of starch, 15 parts of polyacrylamide, 10 parts of sodium alginate, 4 parts of bentonite powder , 5 parts of diatomite powder, 4 parts of phenolic resin, 4 parts of bisimidazoline quaternary ammonium salt corrosion inhibitor and 10 parts of thiophene aqueous dispersion.
[0018] The preparation method of the present embodiment comprises the following steps:
[0019] A, adding carboxymethyl cellulose, nano-titanium dioxide powder, superfine tin antimony oxide powder, starch, bentonite powder, and diatomaceous earth powder into a grinder for grinding to obtain mixture A;
[0020] B. Add polyacrylamide, sodium alginate, phenolic resin, bisimidazoline quaternary ammonium salt corrosion inhibitor and thiophene aqueous dispersion to the mixture A, add it to the mechanical stirring tank after mixing, and t...
Embodiment 2
[0023] The proportion of ingredients used is: 25 parts of carboxymethyl cellulose, 10 parts of nano-titanium dioxide powder, 15 parts of ultra-fine antimony tin oxide powder, 18 parts of starch, 25 parts of polyacrylamide, 20 parts of sodium alginate, and 10 parts of bentonite powder , 10 parts of diatomite powder, 8 parts of phenolic resin, 8 parts of bisimidazoline quaternary ammonium salt corrosion inhibitor and 20 parts of thiophene aqueous dispersion.
[0024] The preparation method of the present embodiment comprises the following steps:
[0025] A, adding carboxymethyl cellulose, nano-titanium dioxide powder, superfine tin antimony oxide powder, starch, bentonite powder, and diatomaceous earth powder into a grinder for grinding to obtain mixture A;
[0026] B. Add polyacrylamide, sodium alginate, phenolic resin, bisimidazoline quaternary ammonium salt corrosion inhibitor and thiophene aqueous dispersion to the mixture A, add it to the mechanical stirring tank after mixi...
Embodiment 3
[0029] The proportion of ingredients used is: 17 parts of carboxymethyl cellulose, 5 parts of nano-titanium dioxide powder, 9 parts of superfine tin oxide antimony powder, 11 parts of starch, 16 parts of polyacrylamide, 12 parts of sodium alginate, and 5 parts of bentonite powder , 6 parts of diatomite powder, 5 parts of phenolic resin, 5 parts of bisimidazoline quaternary ammonium salt corrosion inhibitor and 12 parts of thiophene aqueous dispersion.
[0030] The preparation method of the present embodiment comprises the following steps:
[0031] A, adding carboxymethyl cellulose, nano-titanium dioxide powder, superfine tin antimony oxide powder, starch, bentonite powder, and diatomaceous earth powder into a grinder for grinding to obtain mixture A;
[0032] B. Add polyacrylamide, sodium alginate, phenolic resin, bisimidazoline quaternary ammonium salt corrosion inhibitor and thiophene aqueous dispersion to the mixture A, add it to the mechanical stirring tank after mixing, a...
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