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Polyethylene-palygorskite nanocomposite prepared via in situ coordinated polymerization

机译:原位配位聚合制备聚乙烯-坡缕石纳米复合材料

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摘要

A polyethylene/palygorskite nano-composite (ICP composite) was prepared via an in-situ coordinated polymerization method, using TiCl_4 supported on palygorskite fibers as catalyst and alkyl aluminum as co-catalyst. These composites were compared with those prepared by melt blending (MBC composites). It was found that in the IPC composites, nano-size fibers of palygorskite were uniformly dispersed in the polyethylene matrix. In contrast, in the MBC composites, the palygorskite was dispersed as large clusters of fibers. Regarding the mechanical properties of the IPCs, the tensile modulus increased and the elongation at break decreased with increasing fiber content, while the tensile strength passed through a maximum. The tensile strength and elongation at break were much smaller for the MBC composites. The final degree of crystallinity of the IPC composites decreased with increasing palygorskite content. Regarding the kinetics of crystallization, the ratio between the degree of crystallinity at a given time and the final one was a universal function of time. It was found that large amounts of gel were present in the IPC composites and much smaller in the MBC composites.
机译:聚乙烯/坡缕石纳米复合材料(ICP复合材料)是通过原位配位聚合方法制备的,使用负载在坡缕石纤维上的TiCl_4作为催化剂,烷基铝作为助催化剂。将这些复合材料与通过熔融共混制备的复合材料(MBC复合材料)进行了比较。发现在IPC复合物中,坡缕石的纳米级纤维均匀地分散在聚乙烯基体中。相反,在MBC复合材料中,坡缕石分散成大的纤维簇。关于IPC的机械性能,随着纤维含量的增加,拉伸模量增加,断裂伸长率降低,而拉伸强度则达到最大值。 MBC复合材料的拉伸强度和断裂伸长率要小得多。 IPC复合材料的最终结晶度随坡缕石含量的增加而降低。关于结晶的动力学,在给定时间的结晶度与最终结晶度之间的比率是时间的通用函数。发现在IPC复合材料中存在大量凝胶,而在MBC复合材料中则小得多。

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