Anticorrosive energy-saving coating based on infrared radiating body
A technology of infrared radiation and energy-saving coatings, applied in anti-corrosion coatings, coatings, etc., can solve the problems of not really saving energy, high cost, poor craftsmanship, etc.
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specific Embodiment approach 1
[0004] Specific implementation mode 1: This embodiment is made of 15-25% of the radiator, 35-45% of the additive and 35-45% of the binder according to the weight percentage, and the radiator is made of solid solution zirconia, titanium dioxide, trioxide Dialuminum, ferric oxide, cerium oxide, manganese dioxide or calcium oxide are composed of any two or more oxide particles (called ZMF); the additive is composed of silicon carbide, silicon tetranitride, Kaolin or nano-titanium dioxide are composed of any two or more particles; the sticky material is composed of silicate solution and any one or two solutions of PVA and CMC, and the silicate solution accounts for 97% of the total weight of the sticky material. ~98%, PVA and CMC account for 2~3% of the total weight of the binder; the weight ratio of PVA and CMC used at the same time is 1:1. The particle size of the zirconium dioxide, titanium dioxide, aluminum oxide, ferric oxide, cerium oxide, manganese dioxide or calcium oxide,...
specific Embodiment approach 2
[0005] Embodiment 2: This embodiment is made of 15% radiator, 40% additive and 45% binder by weight percentage. Other compositions and methods are the same as those in Embodiment 1.
specific Embodiment approach 3
[0006] Specific Embodiment Three: This embodiment is made of 25% radiator, 35% additive and 40% binder by weight percentage. Other compositions and methods are the same as those in Embodiment 1.
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