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Tensile and Impact Properties of Recycled Poly(Ethylene Terephthalate) and Polycarbonate Composites Reinforced with Silane Treated Hollow Glass Microspheres

机译:用硅烷处理的中空玻璃微球加固回收聚(乙二醇酯)和聚碳酸酯复合材料的拉伸和冲击性能

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Recycled poly (ethylene terephthalate) or R-PET is conventionally melt blended with polycarbonate with the presence of chain extender in order to produce polymer blend that provides good mechanical properties and cost effectiveness. This research was carried out to improve properties of such a blend by compounding them with silane treated hollow glass microspheres (HGMs), which mixing procedure was emphasized how it could affect mechanical properties. R-PET/PC/HGM composites of a fixed composition were melt compounded with three different mixing procedures. It was found that the compounding HGMs with PC and then R-PET obtained the most rigidity specimens than the all-in-one compounding or the compounding HGMs with R-PET and then PC. Silane treated HGMs were well distributed in the polymer matrix presenting good interfacial adhesion. However, the notched impact strength of all composites were inspected to be in the same range.
机译:再循环聚(对苯二甲酸乙二醇酯)或R-PET通常用链烷基的存在与聚碳酸酯混合,以产生提供良好的机械性能和成本效益的聚合物共混物。通过将它们与硅烷处理的中空玻璃微球(HGMS)混合,进行该研究以改善这种混合物的性质,其强调其如何影响机械性能的混合过程。固定组合物的R-PET / PC / HGM复合材料用三种不同的混合方法熔融配混。发现具有PC的复合HGM,然后R-PET获得最刚性标本,而不是含有R-PET然后PC的一体化配混或配混HGM。硅烷处理的HGMS在聚合物基质中分布良好,呈现出良好的界面粘附性。然而,检查所有复合材料的缺口冲击强度在相同的范围内。

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