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Effectiveness of Organoclays as Compatibilizers for Multiphase Polymer Blends - A Sustainable Route for the Mechanical Recycling of Co-mingled Plastics

机译:有机粘土作为多相聚合物共混物的增容剂的有效性 - 一种可持续途径,用于合并塑料的机械回收

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We prepare and characterize multiphase systems in which small amounts of recycled polymer, namely polyethylene terephtalate (PET) ground from waste bottles, are dispersed in a co-continuous blend of high-density polyethylene (HDPE) and polypropylene (PP). Some of such ternary systems are also filled with plate-like clay nanoparticles with different polarities, in order to assess their influence on the morphology and mechanical behaviour of the blends. On the basis of preliminary wettability considerations and inspections by means of scanning electron microscopy (SEM), the PET is found to preferentially locate within the PP phase. Such a positioning is desirable in order to minimize the presence of multiple interfaces, which is one of the major issues in the recycling process of co-mingles plastics. By means of SEM, dynamic-mechanical analysis and tensile tests we show that the addition of a filler with low polarity, which locates at the PET-matrix interface, has relevant implications on the structure and properties of the ternary systems, refining their morphology at the micro-scale and enhancing their high-temperature mechanical behaviour.
机译:我们准备并表征其中少量再循环聚合物,即从废瓶中的聚乙烯对苯二甲酸乙二醇酯(PET)研磨,分散在高密度聚乙烯(HDPE)和聚丙烯(PP)的共同连续混合物中。这些三元系统中的一些也填充有具有不同极性的板状粘土纳米粒子,以评估它们对混合物的形态和力学行为的影响。在通过扫描电子显微镜(SEM)的初步润湿性考虑和检查的基础上,发现PET优先定位在PP相中。为了使多个界面的存在最小化,这是期望的这种定位,这是共同混合塑料的再循环过程中的主要问题之一。通过SEM,动态机械分析和拉伸试验,我们表明,在PET - 矩阵界面处定位具有低极性的填料对三元系统的结构和性质具有相关意义,改善了它们的形态微尺度和增强其高温机械行为。

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