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The thermal degradation of nanocomposites that contain an oligomeric ammonium cation on the clay

机译:粘土上含有低聚铵阳离子的纳米复合材料的热降解

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摘要

The thermal degradation of polystyrene, high-impact polystyrene, ABS terpolymer, poly(methyl methacrylate), polypropylene and polyethylene nanocomposites has been studied using thermogravimetric analysis coupled to Fourier transform infrared spec-troscopy, TGA/FT-1R. The nanocomposites that have been studied include immiscible, intercalated and exfoliated systems and the evolved gases do not depend upon the type of nanocomposite and are qualitatively similar to those of the virgin polymer. In the case of the styrenics, the presence of clay promotes the production of oligomer, rather than monomer. It is suggested that this change in evolved products may offer an explanation for why some polymers give large reduction in peak heat release rates while others give much smaller reductions. According to this notion, any polymer that undergoes degradation to produce both oligomer and monomer should give a large reduction in peak heat release rate.
机译:聚苯乙烯,高抗冲聚苯乙烯,ABS三元共聚物,聚甲基丙烯酸甲酯,聚丙烯和聚乙烯纳米复合材料的热降解已通过热重分析与傅里叶变换红外光谱法TGA / FT-1R进行了研究。已研究的纳米复合材料包括不混溶,插层和剥落的体系,放出的气体不取决于纳米复合材料的类型,并且在质量上与原始聚合物相似。就苯乙烯而言,粘土的存在促进了低聚物而不是单体的产生。有人建议,这种演变产物的变化可以解释为什么某些聚合物的峰值放热速率大大降低,而另一些聚合物的降低幅度却小得多。根据该概念,任何经历降解以产生低聚物和单体的聚合物均应大大降低峰值放热速率。

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