Solar heat reflective insulated lacquer and its production method
A solar heat and heat insulation technology, applied in the direction of reflection/signal coating, chemical industry, coating, etc., can solve the problems that cannot be popularized and applied in a large area, cannot solve the problems of glass heat insulation, high cost of insulating glass, etc., and achieve visible light transmittance Good, low equipment and process requirements, low cost effect
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Embodiment 1
[0017] Example 1. First make 12kg of yttrium oxide into nanoscale, then put it into the ultrasonic disperser together with 0.36kg of organic silicon coupling agent and 12kg of butyl acetate solvent, and disperse for 1-1.5 hours before use;
[0018] Put 37kg of fluorocarbon resin, 31.90kg of butyl acetate, and 16.00kg of xylene into a high-speed disperser, disperse at a slow speed (400-500 rpm) for 10 minutes, and then mix the above-mentioned treated nano-yttrium oxide and polyether Add 0.7kg of modified silicone, 0.4kg of silicone modified polysiloxane, and 2.0kg of silane coupling agent to a high-speed disperser for high-speed dispersion (1000-1500 rpm) for 30 minutes. After the dispersed material is ultrasonically treated for 1.5-2 hours, the appearance is transparent, and the transparency reaches 80% after detection, and the varnish of the present invention is obtained.
Embodiment 2
[0019] Example 2. First make 12kg of vanadium oxide into nano-scale, and then put it into the ultrasonic disperser together with 0.36kg of organic silicon coupling agent and 12kg of butyl acetate solvent, and disperse for 1-1.5 hours before use;
[0020] Put 40kg of polyurethane resin, 28.15kg of butyl acetate, and 14.00kg of xylene into a high-speed disperser, disperse at a slow speed (400-500 rpm) for 10 minutes, and then modify the above-mentioned nano vanadium oxide and acrylic acid Add 0.90 kg of fluorocarbon, 0.45 kg of fluorine-modified organosiloxane, and 3.5 kg of silane coupling agent to a high-speed disperser for high-speed dispersion (1000-1500 rpm) for 30 minutes. After the dispersed material is ultrasonically treated for 1.5-2 hours, the appearance is transparent, and the transparency reaches 80% after testing, and the varnish of the present invention is obtained.
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