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Toughening and reinforcing waste polypropylene with POE/nano-SiO2 under elongational flow

机译:在伸长流动下用POE/纳米SiO2增韧和增强废聚丙烯

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摘要

Due to the white pollution, the recycling of waste plastics has attracted more and more attention. In this research, waste polypropylene/Ethylene-octene elastomer/nano-SiO2 composites (wPP/POE/SiO2) were melt-blended using an Eccentric Rotor Extruder (ERE) dominated by elongational flow field and a Torque Rheometer (TR) dominated by shear flow field, respectively. The micromorphology, mechanical, crystallization, thermal and rheological properties of wPP/POE/SiO2 blends were studied. Compared to the blends fabricated by TR, the wPP/POE/SiO2 blends with different compositions fabricated by ERE showed higher tensile strength, flexural strength, and modulus. Particularly, without sacrificing the tensile strength, the notched impact strength of the wPP/POE/SiO2 blends fabricated by ERE increased to 13.53 kJ/m(2), a factor of 3 times larger than that of neat wPP. The enhancement of impact strength of the wPP/POE/SiO2 blends fabricated by ERE could be ascribed to the good dispersion of POE under elongational flow and the increase of PP crystallinity. The finding from this work provides an efficient way to recycle wPP.
机译:由于白色污染,废塑料的回收利用越来越受到人们的关注。本研究采用以伸长流场为主的偏心转子挤出机(ERE)和以剪切流场为主的扭矩流变仪(TR)对废旧聚丙烯/乙烯-辛烯弹性体/纳米SiO2复合材料(wPP/POE/SiO2)进行熔融共混。研究了wPP/POE/SiO2共混物的微观形貌、力学、结晶、热学和流变学性能。与TR制备的共混物相比,ERE制备的不同成分的wPP/POE/SiO2共混物表现出更高的拉伸强度、弯曲强度和模量。特别是在不牺牲拉伸强度的情况下,ERE制备的wPP/POE/SiO2共混物的缺口冲击强度提高到13.53 kJ/m(2),是纯wPP的3倍。ERE制备的wPP/POE/SiO2共混物冲击强度的提高可归因于POE在伸长流下的良好分散性和PP结晶度的增加。这项工作的发现提供了一种回收wPP的有效方法。

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