Preparation method of fluorocarbon coating
A fluorocarbon coating and fluorocarbon resin technology, applied in coatings, polyurea/polyurethane coatings, etc., can solve the problem of easy delamination and falling, weak sand resistance of coated backsheets, reduced service life of solar cells and other problems. Power generation efficiency and other issues, to achieve the effect of expanding the scope of application and excellent aging resistance
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Embodiment 1
[0042] A fluorocarbon coating consisting of two components, A and B.
[0043]Preparation of component A: 1000 g (5.18molOH group) aromatic polyester polyol 121E (Japan Polyurethane Industry Co., Ltd.), 3330g (15.54molNCO group) hexamethylene diisocyanate trimer curing agent HT-90BS (Wanhua Chemical Group Co., Ltd.), 3330g of anhydrous butyl acetate (Zhejiang Chemical Industry Co., Ltd.) were added to the reactor in sequence, and the temperature was raised slowly while stirring. When the temperature rose to 80°C, 7.6g of monobutyl triisooctanoic acid Tin catalyst (Jintian Raw Materials Co., Ltd.), reacted for 2.5 hours; then added 37744g (40.44molOH group) fluorocarbon resin SW-5570 (Shanghai Shengwei Trading Co., Ltd.) to the reaction system, mixed evenly and continued to react for 2.5 hours; The reaction mixture was poured into a high-speed mixer while it was hot, and after being cooled slowly to room temperature, 4542g of nano-silica A380 (Germany Degussa), 1365g of monomeri...
Embodiment 2
[0047] A fluorocarbon coating consisting of two components, A and B.
[0048] Preparation of component A: 1000 g (2.36molOH group) aromatic polyester polyol AK3080 (Foshan Tongde Chemical Co., Ltd.), 3332g (9.44molNCO group) isophorone diisocyanate trimer Z4470BA (German Bayer ), 3332g of anhydrous ethyl acetate (Zhejiang Chemical Industry Co., Ltd.) were added to the reactor in turn, and the temperature was slowly raised while stirring. When the temperature rose to 75°C, 7.6g of monobutyltin oxide (Taixing Shengling Co., Ltd.) was added. Hour; Add 19824g (21.24molOH groups) fluorocarbon resin GK570 (Dakin in Japan) to the reaction system again, mix uniformly and continue to react after 3 hours; Pour the reaction mixture into a high-speed mixer while it is hot, and after slowly cooling to room temperature, Weigh 4124g of nano-alumina TBD-L30 (Wuxi Tuoboda Titanium Dioxide Products Co., Ltd.), 1376g of monomeric carbodiimide hydrolysis stabilizer I powder (Rhein Chemie), 550g o...
Embodiment 3
[0052] A fluorocarbon coating consisting of two components, A and B.
[0053] Preparation of component A: 1000 g (2.19molOH group) polycarbonate polyol PC-61 (Japan Polyurethane Industry Co., Ltd.), 1483g (7.66molNCO group) hexamethylene diisocyanate trimer curing agent TKA100 ( Asahi Kasei Chemical Co., Ltd.), 1483g of anhydrous n-butyl ketone (Zhejiang Chemical Industry Co., Ltd.) were successively added into the reactor, and the temperature was slowly raised while stirring. City Shengling Co., Ltd.), reacted for 2 hours; then added 15094g (17.52molOH group) fluorocarbon resin L101 (Wanbo Paint Chemical Co., Ltd.) to the reaction system, mixed evenly and continued to react for 3 hours; pour the reaction mixture while hot Put it into a high-speed mixer, slowly cool to room temperature, weigh 1144g nano-carbon black JY-101P (Hangzhou Junyi New Material Co., Ltd.), 1716g nano-titanium dioxide TR81 (U.S. Huntsman), 763g polycarbodiimide hydrolytically stable Agent P200 (Rhein C...
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