Fireproof conductive coating
A conductive coating and refractory technology, applied in the field of refractory conductive coatings, can solve problems such as single function, and achieve the effects of simple production, good use effect, good fire resistance and electrical conductivity
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Embodiment 1
[0015] 24 parts of lithium silicate, 12 parts of epoxy resin, 8 parts of butyl acetate, 4 parts of ethylene glycol, 6 parts of butanol, 2 parts of ethylene glycol monohexyl ether, 4 parts of dimethylethanolamine, cobalt calcium carbonate Put 4 parts into the reactor, stir continuously, heat to 75°C after mixing completely, react twice at a speed of 12m / min under a 120W / cm ultraviolet lamp, and then solidify to obtain the product.
Embodiment 2
[0017] 30 parts of lithium silicate, 14 parts of epoxy resin, 10 parts of butyl acetate, 8 parts of ethylene glycol, 9 parts of butanol, 5 parts of ethylene glycol monohexyl ether, 6 parts of dimethylethanolamine, cobalt calcium carbonate Put 5 parts into the reactor, stir continuously, heat to 75°C after mixing completely, react twice at a speed of 12m / min under a 120W / cm ultraviolet lamp, and then solidify to obtain the product.
Embodiment 3
[0019] 36 parts of lithium silicate, 16 parts of epoxy resin, 12 parts of butyl acetate, 12 parts of ethylene glycol, 12 parts of butanol, 8 parts of ethylene glycol monohexyl ether, 8 parts of dimethylethanolamine, cobalt calcium carbonate Put 6 parts into the reactor, stir continuously, heat to 75°C after mixing completely, react twice at a speed of 12m / min under a 120W / cm ultraviolet lamp, and then solidify to obtain the product.
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