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Fabrication and Mechanical Properties of Glass Fiber/Talc/CaCO3 Filled Recycled PP Composites

机译:玻璃纤维/滑石/ CaCO3填充再生PP复合材料的制备和力学性能

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Until now, recycling studies brought to the agenda after the rapid increasing of plastic materials in every area and causing those plastics to environmental pollution after discarding them following the utilization. The purpose of recycling plastic waste is to minimize environmental pollution and to create of new resources. To perform the present study, Recycled Polypropylene Granules (RPP) belonging to Polypropylene (PP) will be used in most particularly in the automotive and in the packaging industry finding application area behind the Low Density Polyethylene (LDPE). To develop the several properties (physical and thermal) of RPP polymer and to get close to or greater value to the original PP features, different rates of micron-sized glass fibers, talc and CaCO3 are added into the polymer. By recycling waste, demand for natural resources (such as oil, which is plastic’s raw materials) will decrease and rapid consumption of energy sources will be prevented while providing the protection of natural resources. Raw materials imports would be reduced due to the usage of recycled products. In this study, Recycled Polypropylene Granules (RPP) were obtained from companies and glass fiber/talc/CaCO3 additive RPP granules in different ratios were produced with compounding extrusion process. These produced new composite pellets were produced in injection molding machine by means of designed mold to perform tensile and impact tests. In the thermal analysis, the melting temperature and crystallization rate were determined by DSC analysis; the thermal decomposition temperature was determined by TGA analysis. Micro structural examination was done using a Scanning Electron Microscope (SEM). 
机译:到目前为止,在每个领域中塑料材料的迅猛增长之后,回收研究已经提上了议事日程,这些塑料在使用后被丢弃,造成了环境污染。回收塑料废料的目的是最大程度地减少环境污染并创造新的资源。为了进行本研究,属于聚丙烯(PP)的再生聚丙烯颗粒(RPP)将最特别地用于汽车和包装行业,以发现低密度聚乙烯(LDPE)背后的应用领域。为了发挥RPP聚合物的几种特性(物理和热学特性)并使其接近或大于原始PP的特性,将不同比例的微米级玻璃纤维,滑石粉和CaCO3添加到聚合物中。通过回收利用废物,对自然资源(例如石油,这是塑料的原材料)的需求将减少,并且在提供自然资源保护的同时,将防止能源的快速消耗。由于使用了再生产品,原材料进口将减少。在这项研究中,从公司获得了再生聚丙烯颗粒(RPP),并通过复合挤压工艺生产了不同比例的玻璃纤维/滑石/ CaCO3添加剂RPP颗粒。这些生产的新复合颗粒是在注塑机中通过设计的模具进行拉伸和冲击测试而生产的。在热分析中,通过DSC分析确定熔融温度和结晶速率。通过TGA分析确定热分解温度。使用扫描电子显微镜(SEM)进行微观结构检查。

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