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首页> 外文期刊>International Journal of Plastics Technology >Polypropylene/high impact polystyrene blend nanocomposites obtained from E-waste: evaluation of mechanical, thermal and morphological properties
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Polypropylene/high impact polystyrene blend nanocomposites obtained from E-waste: evaluation of mechanical, thermal and morphological properties

机译:由电子废物获得的聚丙烯/高抗冲聚苯乙烯共混物纳米复合材料:机械,热和形态性能评估

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摘要

Postconsumer Polypropylene and High Impact Polystyrene were obtained from E-waste by mechanical recycling. Recycled PP/HIPS at various blend ratios of 30/70, 50/50 and 70/30 were blended in a batch mixer and was optimized at a blend composition of 70/30 wt ratio of PP/HIPS based on mechanical performance. Mechanical, morphological and thermal properties of optimized recycled blend were studied using triblock copolymer SEBS, as well as SEBS with C20A. Mechanical tests revealed that the blends prepared using 3 wt% of C20A and 5 wt% SEBS with 3% C20A exhibited an increase of 45.13% and 60.73% in impact strength respectively thus indicating interaction of SEBS and C20A with HIPS and PP. Scanning Electron Microscopy (SEM) showed that incorporation of SEBS and C20A reduced average particle size from 5.078 to 2.082 and 1.724 μm respectively. X ray diffraction patterns in the recycled blend nanocomposites showed an increase in the basal spacing indicating the formation of an intercalated structure. Thermal properties of the blend and blend nanocomposites were investigated employing DSC and TGA. Further, DMA analysis showed existence of two distinct Tgs corresponding to PP and HIPS thus indicating the formation of a biphase morphology.
机译:消费后聚丙烯和高抗冲聚苯乙烯是通过机械回收从电子废物中获得的。在分批混合器中混合以30 / 70、50 / 50和70/30的各种混合比回收的PP / HIPS,并根据机械性能以PP / HIPS的重量比为70/30进行优化。使用三嵌段共聚物SEBS以及带有C20A的SEBS,研究了优化的再生共混物的机械,形态和热性能。机械测试显示,使用3 wt%的C20A和5 wt%的SEBS与3%的C20A制备的共混物的冲击强度分别增加了45.13%和60.73%,因此表明SEBS和C20A与HIPS和PP相互作用。扫描电子显微镜(SEM)显示,SEBS和C20A的掺入将平均粒径分别从5.078降低至2.082和1.724μm。回收的共混纳米复合材料中的X射线衍射图谱显示基础间距增加,表明形成了插层结构。使用DSC和TGA研究了共混物和共混物纳米复合材料的热性能。进一步,DMA分析表明存在对应于PP和HIPS的两个不同的T g ,因此表明形成了双相形态。

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