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Friction Performance Analysis of Waste Tire Rubber Powder Reinforced Polypropylene Using Pin-On-Disk Tribometer

机译:磁盘摩擦计摩擦轮胎橡胶粉加筋聚丙烯的摩擦性能分析

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Waste tire rubber powder reinforced polypropylene composites were established with different set of compositions ranging from 0% to 40%, where coefficient of friction for each of them was analyzed by pin on disk tribometer. The tribological effect between the pin-disk reveals of how the reinforcement plays a vital role in enhancing the coefficient of friction as compared to virgin polypropylene. This paper also elaborates in detail of how the matrix, reinforcement, specimen and test were prepared and conducted via critically designed methodology. A specially designed non-metallic parted line mold was used to ease specimen removal. SEM micrographs provides clearer view of what actually happens between the inter layer bonding of matrix and reinforced materials. The promising findings not only save the environment by utilizing waste tires which are often difficult to be disposed, but it also significantly enhanced the coefficient of friction for pure polypropylene which is highly potential to be used in engineering applications. The correlation between these materials was found towards routing an alternative way of how waste tires could be utilized to engineer new composite materials.
机译:用不同于0%至40%的不同组合物建立废轮胎橡胶粉末增强聚丙烯复合材料,其中通过销钉摩特计分析了每种摩擦系数。 PIN盘之间的摩擦学效应揭示了与维京聚丙烯相比增强摩擦系数的增强作用的重要作用。本文还详细阐述了基质,增强,样品和试验的方式,通过批判性的方法制备和进行。采用专门设计的非金属离子模具来缓解样品去除。 SEM显微照片提供了更清晰的视图,其实际发生在基质和增强材料的层间键合之间的实际情况。有希望的发现不仅通过利用通常难以设置的废轮胎来节省环境,而且还显着提高了纯聚丙烯的摩擦系数,这是在工程应用中使用的高潜力。这些材料之间的相关性被发现朝向布线的替代方式,这些方法可以如何利用废物轮胎来工程到工程新的复合材料。

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