首页> 外文期刊>Journal of Materials Science >Halogen-free and phosphorus-free flame-retarded polycarbonate using cyclic polyphenylsilsesquioxanes
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Halogen-free and phosphorus-free flame-retarded polycarbonate using cyclic polyphenylsilsesquioxanes

机译:使用循环多苯基硅氧烷淀粉的无卤素和无磷的火焰延迟聚碳酸酯

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摘要

Organic-inorganic hybrid macrocyclic compounds, polyphenylsilsesquioxanes (cyc-PPSQ), have been synthesized through hydrolysis and condensation reactions of phenyl trichlorosilane. PC/cyc-PPSQ flame retardant materials were obtained by melt blending cyc-PPSQ and PC using a twin-screw extruder. The combustion and thermal decomposition behavior of PC/cyc-PPSQ composites were studied using UL-94, LOI, CONE, TG-FTIR and Py-GC/MS, which showed that the presence of cyc-PPSQ could improve flame retardancy and reduce the heat release and smoke release during combustion of PC. Incorporation of 2 wt% cyc-PPSQ produced a PC/cyc-PPSQ-2 composite which displayed LOI 37.5% and UL-94 V-0 (1.6 mm). The presence of cyc-PPSQ not only improved the flame retardancy of PC, but also did not diminish the glass transition temperature, good mechanical properties and transparency of PC. These results combined with those from TG-FTIR analysis suggest that cyc-PPSQ can promote the initial thermal induced chain-breaking reaction of PC, promote the cross-linking and charring of PC, and facilitate the formation of a dense carbon layer and external SiO2 inorganic barrier layer during combustion. Results from Py-GC/MS indicate that the presence of cyc-PPSQ promotes the generation of phenolic compounds when the composites are pyrolyzed at high temperature.
机译:通过苯基三氯硅烷的水解和缩合反应合成了有机 - 无机杂交致癌化合物,多苯基硅氧烷(Cyc-PPSQ)。使用双螺杆挤出机通过熔融混合Cyc-PPSQ和PC获得PC / CYC-PPSQ阻燃材料。使用UL-94,LOI,CONE,TG-FTIR和PY-GC / MS研究了PC / CYC-PPSQ复合材料的燃烧和热分解行为,表明CYC-PPSQ的存在可以改善阻燃性并减少PC燃烧过程中的热释放和烟雾释放。掺入2wt%cyc-ppsq产生的PC / CYC-PPSQ-2复合材料,其显示LOI 37.5%和UL-94 V-0(1.6mm)。 CYC-PPSQ的存在不仅改善了PC的阻燃性,而且还没有降低玻璃化转变温度,良好的机械性能和PC的透明度。这些结果与来自TG-FTIR分析的结果表明CYC-PPSQ可以促进PC的初始热诱导的链断反应,促进PC的交联和致荷,并促进致密碳层和外部SiO2的形成燃烧过程中的无机阻挡层。来自Py-GC / MS的结果表明,当复合材料在高温下热解时,Cyc-PPSQ的存在促进酚类化合物的产生。

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