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Synergistic effect of ferric chloride and silicon mixtures on the thermal stabilization enhancement of ABS

机译:氯化铁和硅混合物对ABS热稳定性增强的协同作用

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摘要

A previous study from this laboratory has shown that Lewis acid-type transition metal chlorides (NiCl_2, CoCl_2, ZnCl_2, and FeCl_3) are effective char forming catalysts for ABS terpolymer in an inert atmosphere [Jang J, Kim JH, Bae JY. Polym Degrad Stab 2005;88(2):324.]. However, transition metal chloride catalysed char formation (and flame-retardance enhancement) of ABS in air was unsuccessful due to the oxidative degradation of the char at a higher temperature. In order to overcome these undesirable phenomena, we incorporated silicon with transition metal chlorides as co-catalyst and a series of ABS/transition metal chloride/ silicon compounds were made from them and their flame retardancy was evaluated by measuring the limiting oxygen index (LOI) values. Our results showed that among various transition metal chloride/silicon catalyst systems the incorporated mixture of ferric chloride and silicon is very effective in enhancing the thermal stabilization of ABS and LOI value as high as 33 is obtained. The reason for this synergistic effect by ferric chloride and silicon was postulated to come from the interaction between ferric chloride and silicon at elevated temperatures, probably generating silicon tetrachloride and hydrogen chloride.
机译:该实验室先前的研究表明,路易斯酸型过渡金属氯化物(NiCl_2,CoCl_2,ZnCl_2和FeCl_3)在惰性气氛中是ABS三元共聚物的有效成炭催化剂[Jang J,Kim JH,Bae JY。 Polym Degrad Stab 2005; 88(2):324。]。但是,由于高温下炭的氧化降解,过渡金属氯化物催化的ABS在空气中形成炭(并提高阻燃性)是不成功的。为了克服这些不良现象,我们在硅中加入了过渡金属氯化物作为助催化剂,并由此制得了一系列ABS /过渡金属氯化物/硅化合物,并通过测量极限氧指数(LOI)评估了它们的阻燃性。价值观。我们的结果表明,在各种过渡金属氯化物/硅催化剂体系中,掺入的氯化铁和硅的混合物对提高ABS的热稳定性非常有效,LOI值高达33。推测氯化铁与硅产生这种协同作用的原因是由于氯化铁与硅在高温下的相互作用,可能会生成四氯化硅和氯化氢。

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