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首页> 外文期刊>Polymers & Polymer Composites >Effect of Clay Types on the Properties of Si lane Compatibilzied Metallocene Polyethylene/Clay Nanocomposites
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Effect of Clay Types on the Properties of Si lane Compatibilzied Metallocene Polyethylene/Clay Nanocomposites

机译:粘土类型对硅泳道相容的茂金属聚乙烯/粘土纳米复合材料性能的影响

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摘要

The interaction between the intercalant within clay and the compatibilizer is essential to the properties of nanocomposites, and the compatibilizer properties are often neglected. In this work, we have deliberately used a low crystallinity polyolefin elastomer as a compatibilizer to investigate if the inferior mechanical properties of the compatibilizer compared with those of the matrix would counteract the effects of high dispersion of clay in the mPE/clay systems. Melt-mixed mPE (metallocene polyethylene)/clay nanocomposites were thus prepared using a low-crystallinity polyolefin elastomer (mPE-g-silane) as a compatibilizer under two different types of commercial clay (Cloisite 20A and 30B) with different organic affinities to mPE-g-silane, to investigate both intercalant and compatibilizer effects. According to X-ray diffraction and transmission electron microscopy analyses, all 20A-filled nanocomposites showed fairly well-dispersed clay within the mPE matrix in comparison with 30B-filled cases due to a larger d-spacing of 20A for easier access of the compatibilizer, even though a higher affinity between 30B and the compatibilizer was expected. Measurable gel content was observed for 20A-filled systems, but not for 30B-filled systems. Tensile properties and tear strength of 20A-filled samples were higher than those of 30B-filled samples, again due to the high dispersion effect in 20A-filled samples. Thus, the affinity of 20A clay with silane agent was quite essential for these compatibilized mPE/clay systems, despite of the weak mechanical properties of the compatibilizer. Clearly, a subtle balance of the interfacial interaction, interface properties and clay dispersion is essential to attain the good mechanical properties of mPE/clay nanocomposites.
机译:粘土中的嵌入剂与增容剂之间的相互作用对纳米复合材料的性能至关重要,而增容剂的性能通常被忽略。在这项工作中,我们故意使用低结晶度的聚烯烃弹性体作为增容剂,以研究增容剂与基质相比的劣等机械性能是否会抵消粘土在mPE /粘土体系中的高分散性的影响。因此,使用低结晶度聚烯烃弹性体(mPE-g-硅烷)作为增容剂,在两种不同类型的对mPE具有不同有机亲合力的商品粘土(氯土20A和30B)下,制备了熔融混合的mPE(茂金属聚乙烯)/粘土纳米复合材料。 -g-硅烷,以研究嵌入剂和增容剂的作用。根据X射线衍射和透射电子显微镜分析,与20B填充的情况相比,所有20A填充的纳米复合材料在mPE基质中均表现出相当分散的粘土,这是因为20A的较大d间距使增容剂更容易获得,即使预期30B与增容剂之间的亲和力更高。对于填充有20A的系统,可观察到可测量的凝胶含量,但填充有30B的系统则未观察到。再次由于20A填充样品中的高分散效应,填充20A的样品的拉伸性能和撕裂强度高于填充30B的样品。因此,尽管增容剂的机械性能较弱,但20A粘土与硅烷试剂的亲和力对于这些增容的mPE /粘土系统而言非常重要。显然,界面相互作用,界面性能和粘土分散性之间的微妙平衡对于获得mPE /粘土纳米复合材料的良好机械性能至关重要。

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