首页> 外文期刊>Journal of Applied Polymer Science >Preparation and properties of ethylene propylene rubber (EPR)-clay nanocomposites based on maleic anhydride-modified EPR and organophilic clay
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Preparation and properties of ethylene propylene rubber (EPR)-clay nanocomposites based on maleic anhydride-modified EPR and organophilic clay

机译:基于马来酸酐改性的EPR和亲有机性粘土的乙丙橡胶-粘土纳米复合材料的制备与性能

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摘要

Ethylene propylene rubber-clay nanocomposites (EPR-CNs) were prepared by melt-compounding maleic anhydride modified EPR (EPR-MA) with organophilic clay, and their properties were examined. Silicate layers of organophilic clay were found to exfoliate and homogeneously disperse into the nanometer level in the nanocomposites by transmission electron microscopy observation. EPR-CNs exhibited higher tensile moduli compared to EPR-MA and composites containing conventional fillers such as carbon black, talc. The storage moduli of EPR-CNs were also higher than those of EPR-MA and the conventional composites. Creep resistances of EPR-CNs were much improved compared for EPR-MA. Degree of swelling in hexadecane was remarkably restricted. Improvement of these properties is caused because dispersed silicate layers have much large interface with the EPR matrix and are thought to strongly restrain the EPR polymer chains. Nanocomposite technology using small amount of silicate layers is useful to improve properties of thermoplastic elastomer. Various kinds of thermoplastic elastomers are expected to be produced by loading of silicate layers with or without conventional fillers. (C) 2004 Wiley Periodicals, Inc.
机译:通过将马来酸酐改性的EPR(EPR-MA)与亲有机性粘土熔融混合制备乙丙橡胶-粘土纳米复合材料(EPR-CNs),并对其性能进行了研究。通过透射电子显微镜观察发现,亲有机性粘土的硅酸盐层剥落并均匀分散在纳米复合材料的纳米级。与EPR-MA和含有常规填料(如炭黑,滑石粉)的复合材料相比,EPR-CN表现出更高的拉伸模量。 EPR-CN的储能模量也高于EPR-MA和常规复合材料。与EPR-MA相比,EPR-CN的耐蠕变性大大提高。十六烷的溶胀度明显受到限制。这些性能的提高是由于分散的硅酸盐层与EPR基质具有很大的界面,并被认为可以强烈地限制EPR聚合物链。使用少量硅酸盐层的纳米复合技术可用于改善热塑性弹性体的性能。期望通过加载具有或不具有常规填料的硅酸盐层来生产各种热塑性弹性体。 (C)2004年Wiley Periodicals,Inc.

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