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Effect of the core-forming polymer on phase morphology and mechanical properties of PA6/EPDM-g-MA/HDPE ternary blends

机译:成核聚合物对PA6 / EPDM-g-MA / HDPE三元共混物的相形态和力学性能的影响

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In this work, phase morphology and mechanical properties of ternary blends of PA6 (Polyamide 6), EPDM-g-MA (Ethylene-propylene-diene rubber grafted with maleic anhydride) and different HDPEs (high-density polyethylene) have been studied. Although HDPEs of various viscosity and contents are used, the binary (EPDM-g-MA/HDPE) dispersed phase is of a core-shell structure, in which HOPE forms the core. When low viscosity HOPE is used, the blends consist of single-core core-shell structure. While, the application of high viscosity HDPE plays an important role in forming a multinuclear core-shell structure. Furthermore, the notched Izod impact strength of PA6/EPDM-g-MA/H-HDPE blends 70/15/15 reaches the highest, which is 2 times higher than PA6/EPDM-g-MA 70/30 binary blends. The study of the toughening mechanism of PA6 ternary blends with core-shell structure suggest that the fibrillation of core-shell particles in PA6/EPDM-g-MA/HDPE5 ternary blends can absorb fracture impact energy and prevent micro-crack further propagating, and thus obtain higher notched Izod impact strength. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在这项工作中,已经研究了PA6(聚酰胺6),EPDM-g-MA(接枝有马来酸酐的乙烯-丙烯-二烯橡胶)和不同的HDPE(高密度聚乙烯)的三元共混物的相形态和力学性能。尽管使用了各种粘度和含量的HDPE,但二元(EPDM-g-MA / HDPE)分散相具有核-壳结构,其中HOPE形成核。当使用低粘度的HOPE时,共混物由单核核壳结构组成。同时,高粘度HDPE的应用在形成多核核-壳结构中起着重要作用。此外,PA6 / EPDM-g-MA / H-HDPE共混物70/15/15的缺口悬臂梁冲击强度达到最高,是PA6 / EPDM-g-MA 70/30二元共混物的2倍。对具有核-壳结构的PA6三元共混物的增韧机理的研究表明,PA6 / EPDM-g-MA / HDPE5三元共混物中的核-壳颗粒的原纤化可以吸收断裂冲击能并防止微裂纹进一步传播,并且从而获得更高的缺口悬臂梁式冲击强度。 (C)2014 Elsevier Ltd.保留所有权利。

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