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Preliminary studies on the effect of polyethylene octene elastomer on polypropylene nanocomposite: mechanical properties and phase morphology

机译:聚乙烯辛烯弹性体对聚丙烯纳米复合材料影响的初步研究:力学性能和相形态

摘要

The melf-direct intercalation method was employed to prepare rubber toughened polypropylene nanocomposites (RTPPNC). The blends composition was kept constant (PP+organocloly 6wt%) while the polyethylene octane (POE) content was varied between 0 and 20w% .Maleated PP (PP-g-MAH) was used as compatibilizer in the blend system. The POE used had 25wt% 1-octene content. X-ray diffractometer (XRD) revealed that an intercalation MMT silicate layer structure was formed in rubber-toughened polypropylene nanocomposite (RTPPNC). Izod impact measurements indicated that the POE addition led to a significant improvement in the impact strength of the RTPPNC, from 6.2 kJ /m2 in un-toughened PP/ Org-MMT nanocomposite to 17.8 kJ/m2 in RTPPNC containing 20wt% POE. However, the flexural modulus and flexural strength of the blends decreased with respect to neat PP as the weight fraction of POE was increased to 20wt%. Scanning electron microscope (SEM) was used for the investigation of the phase morphologry, rubber patlicles size and particle size distribution. SEM study revealed a two-phase morphology where POE as droplets dispersed finely and uniformly in the PP matrix.
机译:采用金属直接插入法制备了橡胶增韧聚丙烯纳米复合材料(RTPPNC)。共混物的组成保持恒定(PP +有机基含量为6wt%),而聚乙烯辛烷(POE)的含量在0至20w%之间变化。在共混体系中,马来酸PP(PP-g-MAH)被用作增容剂。使用的POE具有25重量%的1-辛烯含量。 X射线衍射仪(XRD)表明,在橡胶增韧聚丙烯纳米复合材料(RTPPNC)中形成了层间MMT硅酸盐层结构。悬臂梁式冲击测量表明,POE的添加显着提高了RTPPNC的冲击强度,从未增韧的PP / Org-MMT纳米复合材料中的6.2 kJ / m2到包含20wt%POE的RTPPNC中的17.8 kJ / m2。然而,相对于纯PP,共混物的挠曲模量和挠曲强度随着POE的重量分数增加至20wt%而降低。扫描电子显微镜(SEM)用于研究相形态,橡胶颗粒尺寸和粒径分布。 SEM研究显示了两相形态,其中POE作为液滴细小且均匀地分散在PP基质中。

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