Processing process of base for large-scale transformer
A processing technology and transformer technology, which is applied to the processing technology field of bases for large transformers, can solve the problem of high dimensional precision, and achieve the effects of simplified process, good comprehensive mechanical properties, and uniform composition transition.
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Embodiment 1
[0047] The anti-corrosion, high-temperature and anti-oxidation coating includes the following materials in parts by weight: 1 part of sulfoalkylamide, 13 parts of fluororesin, 2 parts of polyethylene, 23 parts of zinc powder, 8 parts of silicone epoxy resin, modified terpolymer 13 parts of aluminum phosphate, 15 parts of polyvinyl alcohol.
[0048] Implementation effect: first-class adhesion; resistance to 20% phosphoric acid or 10% sodium hydroxide, no change in the coating for 7 days; no change in 10 days at 300°C.
Embodiment 2
[0050] The anti-corrosion, high-temperature and oxidation-resistant coating includes the following parts by weight: 3 parts of sodium oleoyloxyethanesulfonate, 10 parts of fluororesin, 16 parts of polyethylene, 10 parts of zinc powder, 15 parts of silicone epoxy resin, Modified aluminum tripolyphosphate 10 parts, polyvinyl alcohol 20 parts.
[0051] Implementation effect: first-class adhesion; resistance to 20% phosphoric acid or 10% sodium hydroxide, no change in coating for 10 days; no change in 10 days at 300°C.
Embodiment 3
[0053] The anti-corrosion, high-temperature and oxidation-resistant coating includes the following parts by weight: 2 parts of α-olefin sulfonate (AOS), 11 parts of fluororesin, 6 parts of polyethylene, 16 parts of zinc powder, silicone epoxy resin 10 parts, 12 parts of modified aluminum tripolyphosphate, 17 parts of polyvinyl alcohol.
[0054] Implementation effect: first-class adhesion; resistance to 20% phosphoric acid or 10% sodium hydroxide, no change in the coating for 17 days; no change in 10 days at 300°C.
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