A kind of organosilicon-modified phytate-coupled ammonium polyphosphate and fire-retardant coating prepared therefrom
A technology of ammonium polyphosphate and fireproof coatings, applied in fireproof coatings, coatings, etc., which can solve the problems of unremarkable fireproof performance of fireproof coatings, unfavorable industrial production, and high price of synergists, so as to prolong stability and storage time, improve Charcoal effect, good barrier effect
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Embodiment 1
[0034] 0.5wt% of KH560 (γ-glycidyl ether oxypropyltrimethoxysilane) was added to the ammonium polyphosphate, stirred at high speed for 15s and mixed evenly, then added 1.5wt% of nickel phytate, and continued to stir at high speed for 20s to obtain resistance. The first product of the fuel; after taking it out, put it into a high-temperature electronic oven, and react at 140 ° C for 2 hours. After the reaction, it was taken out and pulverized to obtain PA-APP sample A, white powder with D50 of 12um.
Embodiment 2
[0036] Add 0.5wt% of KH560 (γ-glycidyl ether oxypropyltrimethoxysilane) to ammonium polyphosphate, stir at high speed for 10s and mix well, then add 4.0wt% of zinc phytate, and continue to stir at high speed for 25s to obtain resistance. The first product of the fuel; after taking it out, put it into a high-temperature electronic oven, and react at 100 ° C for 2.5 hours. After the reaction, it was taken out and pulverized to obtain PA-APP sample B, white powder with D50 of 20um.
Embodiment 3
[0038]2.5wt% of KH-1770 ((3,4 epoxycyclohexyl)-ethyltriethoxysilane) was added to ammonium polyphosphate, stirred at a high speed for 40s to mix well, then 1.0wt% of zinc phytate was added, After continuing high-speed stirring for 10s, the first product of the flame retardant was obtained; after taking it out, it was put into a high-temperature electronic oven and reacted at 200° C. for 0.5 hour. After the reaction, it was taken out and pulverized to obtain PA-APP sample C, white powder with D50 of 16um.
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