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Study of the Modification of the Properties of (PP/EPR) Blends With a View to Preserving Natural Resources When Elaborating New Formulation and Recycling Polymers

机译:研究(PP / EPR)共混物的性能,以期在开发新配方和回收聚合物时保留自然资源

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The aim of the present work is to study how CaCO3, very abundant on earth, can be blended with polypropyl-ene/ethylene propylene rubber (PP/EPR) either to preserve natural resources when elaborating virgin formulations or to simulate mixtures of waste made of CaCO3 filled PP with PP/EPR which could result from end-of-life-vehicles (ELV). The article focuses on the studies of PP/EPR blends, used in the manufacture of automobile fenders, in the presence of nano-CaCO3 and compatibil-izers. Blends of various compositions (with and without compatibilizer and nanoparticles) were prepared using a corotating twin-screw extruder. The results were compared with the ones presented by a commercial (PP/ EPR) blend. The experiments included mechanical tests, differential scanning calorimetry, scanning electron microscopy, and dynamic mechanical analysis experiments. The presence of the compatibilizers in the (PP/ EPR) blends decreases the size of elastomer particles, improves the adherence to the interface and improves the mechanical properties. The nano-CaCO3 would also seem to act as a nucleating agent in the PP/EPR matrix; it increases the cristallinity and the Young modulus of the blends.
机译:本工作的目的是研究如何将地球上非常丰富的CaCO3与聚丙稀/乙丙橡胶(PP / EPR)混合,以在制作原始配方时保留自然资源,或模拟由以下材料制成的废物混合物CaCO3将PP / EPR填充到PP中,这可能是由于报废车辆(ELV)导致的。本文着重研究在纳米CaCO3和相容剂存在下用于制造汽车挡泥板的PP / EPR共混物。使用同向双螺杆挤出机制备各种组合物(有或没有增容剂和纳米颗粒)的共混物。将结果与商业(PP / EPR)混合物的结果进行了比较。实验包括机械测试,差示扫描量热法,扫描电子显微镜和动态力学分析实验。 (PP / EPR)共混物中相容剂的存在降低了弹性体颗粒的尺寸,改善了与界面的粘附性并改善了机械性能。纳米CaCO3在PP / EPR基质中似乎也起着成核剂的作用。它增加了共混物的结晶度和杨氏模量。

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