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In situ reactive compatibilization of PP/ABS blends via Friedel-Crafts alkylation reaction

机译:PP / ABS共混物通过Friedel-Crafts烷基化反应原位反应增容

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摘要

Friedel-Crafts alkylation reaction was employed to reactively compatibilize the polypropylene (PP)/acrylonitrile- butadiene-styrene (ABS) blends, using AlCl3 as a catalyst. Rheology, morphology and mechanical properties of the reactive compatibilized blends along with the reference un-compatibilized samples were studied. Scanning electron microscopy (SEM) observations showed that blends containing catalyst exhibited an improvement in the dispersion state of ABS rubber particles. The results of mechanical tests revealed that reactive compatibilization partly increased the ultimate strength and Izod impact strength of the blends with a loss in tensile ductility. The change in these properties was explained in terms of different chemical reactions including grafting and degradation. Occurrence of these reactions was confirmed using different viscoelastic properties of the compatibilized blend samples. A great improvement in ultimate strength and impact toughness to levels much higher than those of neat PP was achieved in reactively compatibilized PP/ABS blends containing PP-g-MA. These findings were justified by morphological and rheological analyses. The formation of graft copolymer was also confirmed using Fourier transform infrared spectroscopy (FTIR) measurements. The results of impact toughness data were in agreement with the interfacial tension values measured via contact angle analysis. The deformation behavior of the different compatibilized samples was rationalized via fractographic study of the impact-fractured surfaces.
机译:使用AlCl3作为催化剂,使用Friedel-Crafts烷基化反应使聚丙烯(PP)/丙烯腈-丁二烯-苯乙烯(ABS)共混物反应性增容。研究了反应性相容混合物的流变学,形态和力学性能,以及参比的不相容样品。扫描电子显微镜(SEM)观察表明,含有催化剂的共混物显示出ABS橡胶颗粒的分散状态的改善。力学测试的结果表明,反应性相容化部分地提高了共混物的极限强度和悬臂梁式冲击强度,而拉伸延展性下降。这些特性的变化是根据包括接枝和降解在内的不同化学反应来解释的。使用相容的共混物样品的不同粘弹性质可以确认发生了这些反应。在含有PP-g-MA的反应相容的PP / ABS共混物中,极限强度和冲击韧性大大提高,远高于纯聚丙烯。这些发现通过形态学和流变学分析是合理的。还使用傅里叶变换红外光谱(FTIR)测量确认了接枝共聚物的形成。冲击韧性数据的结果与通过接触角分析测得的界面张力值一致。通过对冲击断裂表面进行分形研究,合理化了不同相容样品的变形行为。

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