首页> 外文期刊>Journal of Composite Materials >Effects of EVA-g-MA and EVACO compatibilizers/tougheners on morphological and mechanical properties of PP/EVA/HNT blend polymer nanocomposites
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Effects of EVA-g-MA and EVACO compatibilizers/tougheners on morphological and mechanical properties of PP/EVA/HNT blend polymer nanocomposites

机译:EVA-G-MA和EVACO Compatibilibizers / Ligheners对PP / EVA / HNT混合物聚合物纳米复合材料的形态学和力学性能的影响

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摘要

A series of polypropylene (PP)/poly(ethylene-co-vinyl acetate) (EVA) blend nanocomposites was produced by utilizing different amounts of organophilic halloysite nanotube (Org-HNT) and EVA-based compatibilizers/tougheners. They were prepared by using either only EVA elastomer or using EVA with the compatibilizers which are maleic anhydride grafted EVA (EVA-g-MA) and poly(ethylene-vinyl acetate-carbon monoxide) (EVACO) as well as maleic anhydride grafted PP (PP-g-MA). The morphology-mechanical property relationship was investigated as a function of nature of the compatibilizer and the amount of aluminosilicate nanotube/compatibilizer. The composites prepared without using the EVA-based compatibilizers in all nanotube loading degrees (1%, 3%, 5%) exhibited nanotube aggregates as evidenced by scanning electron microscope analyses. On the other hand, EVA-g-MA and EVACO provided a good dispersion of HNTs at both PP-EVA interface and in the PP matrix. The use of compatibilizers together with 3% Org-HNT resulted in PP/EVA blend nanocomposites with higher tensile modulus and toughness when compared to PP/EVA blend. Particularly, EVACO compatibilizer having highly polar carbonyl group at its backbone provided the highest toughness and Young's modulus as well as impact resistance for the 3% Org-HNT loaded nanocomposite while retaining the yield strength as an indication of a good balance between stiffness/toughness.
机译:通过利用不同量的有机硫酸珠铁纳米管(ORG-HNT)和基于EVA的相容剂/加强剂,产生一系列聚丙烯(PP)/聚(乙烯 - 乙烯基乙烯酯)(EVA)混合物纳米复合材料。通过仅使用EVA弹性体或使用作为马来酸酐接枝EVA(EVA-G-MA)和聚(乙烯 - 乙酸乙烯酯 - 一氧化碳)(EVACO)以及马来酸酐接枝PP( pp-g-ma)。研究了形态学 - 力学性质关系作为增容剂的性质和铝硅酸盐纳米管/增容剂的量的函数。在所有纳米管加载度(1%,3%,5%)中制备的复合材料在所有纳米管加载度(1%,3%,5%)上表现出纳米管聚集体,如扫描电子显微镜分析所证明的。另一方面,EVA-G-MA和EVACO在PP-EVA界面和PP矩阵中提供了HNT的良好分散。与PP / EVA混合物相比,将增容剂与3%ORG-HNT一起加上3%ORG-HNT,导致具有较高拉伸模量和韧性的PP / EVA混合物纳米复合材料。特别地,在其骨架处具有高极性羰基的Evaco增容剂提供了最高的韧性和杨氏模量,以及3%Org-HNT加载的纳米复合材料的抗冲击性,同时保持屈服强度作为刚度/韧性之间的良好平衡的指示。

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