Preparation method of carbon nanotube modified flame-retardant waterborne polyurethane coating and adhesive
A technology of carbon nanotube modification and water-based polyurethane, which is applied in polyurea/polyurethane coatings, polyurea/polyurethane adhesives, adhesives, etc., and can solve the problems of low dispersion, small thermally conductive filler particles, and the performance of adhesives and other problems, to achieve good pressure sensitivity, improve thermal conductivity, increase mechanical properties and flame retardant properties
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Embodiment 1
[0039] (1) To prepare a modified thermally conductive filler, mix 3-aminopropyltriethoxysilane coupling agent with a mass ratio of 1:2:1:0.5, deionized water, tannic acid, and boron nitride nanoparticles at room temperature The sheets were mixed and hydrolyzed for 30 minutes to obtain the hydrolyzed product A; the obtained hydrolyzed product A was added to a high-speed mixer at 80°C and continued to mix for 30 minutes, cooled and discharged, and vacuum-dried to obtain a modified thermally conductive filler;
[0040] (2) To prepare component A, mix polytetrahydrofuran ether diol and modified thermally conductive filler according to the mass ratio of 4:1, first sonicate for 1 hour and then dehydrate under reduced pressure at 100°C for 1 hour to obtain component A;
[0041] (3) Preparation of carbon nanotube-modified flame-retardant polyurethane coating and adhesive: at 50°C, component A (all, the same below), TDI isocyanate and dibutyltin dilaurate are mixed in according to the m...
Embodiment 2
[0051] (1) To prepare a modified thermally conductive filler, at room temperature, a monoalkoxy titanate coupling agent with a mass ratio of 1:4:2:0.8 (Nanjing Quanxi Chemical Co., Ltd., monoalkoxy fatty acid titanate coupling agent), deionized water, tannic acid, and boron nitride nanosheets were mixed and hydrolyzed for 40 minutes to obtain the hydrolyzed product A; the obtained hydrolyzed product A was added to a high-speed mixer at 90° C. to continue mixing for 40 min, cooled and discharged, Vacuum drying to obtain a modified thermally conductive filler;
[0052] (2) To prepare component A, mix polycarbonate diol and modified thermally conductive filler according to the mass ratio of 5:1, ultrasonicate for 2.5 hours and then dehydrate under reduced pressure at 110°C for 2 hours to obtain component A;
[0053] (3) Preparation of coatings and adhesives: React component A, MDI isocyanate and dibutyltin dilaurate at a mass ratio of 3.0:1:0.02 at 80r / min for 50 minutes at 60°C,...
Embodiment 3
[0063](1) To prepare a modified thermally conductive filler, mix 3-aminopropyltriethoxysilane coupling agent with a mass ratio of 1:3:1.5:0.65, deionized water, tannic acid, and boron nitride nanoparticles at room temperature The sheets were mixed and hydrolyzed for 35 minutes to obtain the hydrolyzed product A; the obtained hydrolyzed product A was added to a high-speed mixer at 85°C and continued to mix for 35 minutes, cooled and discharged, and vacuum-dried to obtain a modified thermally conductive filler;
[0064] (2) To prepare component A, mix polytetrahydrofuran ether diol and modified thermally conductive filler according to the mass ratio of 4.5:1, first ultrasonically for 1.5h, and then dehydrate under reduced pressure at 105°C for 1.5h to obtain component A;
[0065] (3) Preparation of carbon nanotube-modified flame-retardant polyurethane coating and adhesive: react component A, PAPI isocyanate and dibutyltin dilaurate at a speed of 70r / min at a mass ratio of 2.75:1:...
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