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Rheological behavior comparison between PET/HDPE and PC/HDPE microfibrillar blends

机译:PET / HDPE和PC / HDPE微原纤共混物的流变行为比较

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摘要

The rheological behaviors of in situ microfibrillar blends, including a typical sernicrystalline/semicrystalline (polyethylene terephthalate (PET)/high-density polyethylene (HDPE)) and a typical amorphous/semicrystalline (polycarbonate (PC)/HDPE) polymer blend were investigated in this study. PET and PC microfibrils exhibit different influences on the rheological behaviors of microfibrillar blends. The viscosity of the microfibrillar blends increases with increased PET and PC concentrations. Surprisingly, the length/diameter ratio of the microfibrils as a result of the hot stretch ratio (HSR) has an opposite influence on the rheological behavior of the two microfibrillar blends. The stretched PET/HDPE blend exhibits higher viscosity than the unstretched counterpart, while the stretched PC/HDPE blend exhibits lower viscosity than the unstretched blend. The data obtained in this study will be helpful for constructing a technical foundation for the recycling and utilization of PET, PC, and HDPE waste mixtures by manufacturing microfibrillar blends in the future.
机译:在此研究了原位微纤维共混物的流变行为,包括典型的细晶/半晶(聚对苯二甲酸乙二酯(PET)/高密度聚乙烯(HDPE))和典型的非晶/半晶(聚碳酸酯(PC)/ HDPE)聚合物共混物研究。 PET和PC微纤维对微纤维共混物的流变行为表现出不同的影响。随着PET和PC浓度的增加,微原纤混合物的粘度也会增加。令人惊讶地,由于热拉伸比(HSR)而导致的微纤维的长度/直径比对两种微纤维的共混物的流变行为具有相反的影响。拉伸的PET / HDPE共混物比未拉伸的共混物具有更高的粘度,而拉伸的PC / HDPE共混物比未拉伸的共混物具有更低的粘度。这项研究中获得的数据将为将来通过制造微原纤维混合物为PET,PC和HDPE废物混合物的回收和利用奠定技术基础提供帮助。

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