High-performance alloy-matrix anticorrosive paint and preparation method thereof
An alloy matrix and anti-corrosion coating technology, applied in anti-corrosion coatings, epoxy resin coatings, coatings, etc., can solve the problems of reducing equipment service life, losing equipment corrosion protection, and easily failing anti-corrosion coatings, achieving excellent anti-corrosion performance, Enhanced fixed effect and long validity period
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Embodiment 1
[0033] The high-performance alloy matrix anticorrosion coating in this embodiment is made of the following raw materials in parts by weight: 15 parts of modified attapulgite, 20 parts of tung oil, 6 parts of modified bentonite, 10 parts of modified zeolite powder, 12 parts of metakaolin, quicklime 3 parts, 10 parts of pumice sand, 23 parts of epoxy acrylate, 4 parts of polyisobutylene (PB2400), 2 parts of polyvinyl alcohol with low degree of polymerization, 11 parts of modified nano activated carbon, 3 parts of zinc chromate, and 5 parts of pigment.
[0034] Among them, the modified attapulgite is made by the following steps: immerse the attapulgite in deionized water, add an appropriate amount of NaCl, mix it uniformly, perform ultrasonic treatment for 8 minutes, and the ultrasonic frequency is 50KHz, then filter and dry. That is, the weight ratio of the attapulgite, deionized water, and NaCl is 1:8:0.06.
[0035] Described modified nano activated carbon is made by following ...
Embodiment 2
[0050] This example is basically the same as Example 1, the difference is the weight ratio of raw material components, and its preparation method is the same as Example 1. The raw materials and their parts by weight are: 20 parts of modified attapulgite, 15 parts of tung oil, 8 parts of modified bentonite, 9 parts of modified zeolite powder, 15 parts of metakaolin, 2 parts of quicklime, 12 parts of pumice sand, epoxy acrylic acid 20 parts of ester, 5 parts of polyisobutylene, 1 part of polyvinyl alcohol, 15 parts of modified nano activated carbon, 2 parts of zinc chromate, 5 parts of pigment.
[0051] The physical and chemical properties of the alloy matrix anticorrosion coating obtained in this example are tested, and the surface is flat and free of debris; scratch resistance hardness 5H (GB / T6739-2006); adhesion level 2 (GB / T1720-1979); heat resistance test 800°C 120h: The paint film is complete and does not fall off (GB / T1735-2009); low temperature resistance test -70°C 120...
Embodiment 3
[0053] This example is basically the same as Example 1, the difference is the weight ratio of raw material components, and its preparation method is the same as Example 1. The raw materials and their parts by weight are: 10 parts of modified attapulgite, 25 parts of tung oil, 5 parts of modified bentonite, 12 parts of modified zeolite powder, 6 parts of metakaolin, 4 parts of quicklime, 8 parts of pumice sand, epoxy acrylic acid 30 parts of ester, 3 parts of polyisobutylene, 3 parts of polyvinyl alcohol, 9 parts of modified nano activated carbon, 4 parts of zinc chromate, 5 parts of pigment.
[0054] The physical and chemical properties of the alloy matrix anticorrosion coating obtained in this example were tested, and the surface was flat and free of lumps; scratch resistance hardness 4H (GB / T6739-2006); adhesion level 1 (GB / T1720-1979); heat resistance test 800°C 120h: The paint film is complete and does not fall off (GB / T1735-2009); low temperature resistance test -70°C 120...
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