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Preparation and Characteristics of an Environmentally Friendly Hyperbranched Flame-Retardant Polyurethane Hybrid Containing Nitrogen Phosphorus and Silicon

机译:含氮磷硅的环保型超支化阻燃聚氨酯杂化材料的制备与表征

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摘要

The NCO functional group of 3-isocyanatoproplytriethoxysilane (IPTS) and the OH functional group of 10-(2,5-dihydroxyphenyl)-10H-9-oxa-10-phospha-phenantbrene-10-oxide (DOPO-BQ) were used to conduct an addition reaction. Following completion of the reaction, triglycidyl isocyanurate (TGIC) was introduced to conduct a ring-opening reaction. Subsequently, a sol–gel method was used to initiate a hydrolysis–condensation reaction on TGIC–IPTS–DOPO-BQ to form a hyperbranched nitrogen–phosphorous–silicon (HBNPSi) flame retardant. This flame retardant was incorporated into a polyurethane (PU) matrix to prepare a hybrid material. Fourier-transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), limiting oxygen index (LOI), UV-VIS spectrophotometry, and Raman analysis were conducted to characterize the structure and analyze the transparency, thermal stability, flame retardancy, and residual char to understand the flame retardant mechanism of the prepared hybrid material. After the flame retardant was added, the maximum degradation rate decreased from −36 to −17 wt.%/min, the integral procedural decomposition temperature (IPDT) increased from 348 to 488 °C, and the char yield increased from 0.7 to 8.1 wt.%. The aforementioned results verified that the thermal stability of PU can be improved after adding HBNPSi. The LOI analysis indicated that the pristine PU was flammable because the LOI of pristine PU was only 19. When the content of added HBNPSi was 40%, the LOI value was 26; thus the PU hybrid became nonflammable.
机译:使用3-异氰酸根合丙三乙氧基硅烷(IPTS)的NCO官能团和10-(2,5-二羟基苯基)-10H-9-氧杂-10-磷酸-菲--10-氧化物(DOPO-BQ)的OH官能团进行加成反应。反应完成后,引入三缩水甘油基异氰脲酸酯(TGIC)进行开环反应。随后,使用溶胶-凝胶法在TGIC-IPTS-DOPO-BQ上引发水解-缩合反应,从而形成高支化氮-磷-硅(HBNPSi)阻燃剂。将该阻燃剂掺入聚氨酯(PU)基体中以制备杂化材料。进行了傅里叶变换红外光谱(FTIR),热重分析(TGA),极限氧指数(LOI),UV-VIS分光光度法和拉曼分析来表征结构并分析透明性,热稳定性,阻燃性和残留炭了解所制备的杂化材料的阻燃机理。加入阻燃剂后,最大降解速率从-36降低至-17 wt。%/ min,整体程序分解温度(IPDT)从348升高至488°C,焦炭产率从0.7增至8.1 wt 。%。上述结果证实,添加HBNPSi后可以提高PU的热稳定性。 LOI分析表明,由于原始PU的LOI仅为19,因此原始PU是可燃的。当添加的HBNPSi含量为40%时,LOI值为26;当HBNPSi的含量为40%时,LOI值为26。因此PU混合动力车变得不可燃。

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