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Studies on Wear Properties of Polystyrene in the Presence of Fibrillated Network of Polytetrafluoroethylene

机译:聚四氟乙烯原纤化网络下聚苯乙烯的磨损性能研究

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Polystyrene (PS) is an important commodity plastic; however, it is not known as a suitable material for tribological applications. It has a relatively high friction coefficient in contact with metallic surfaces and high abrasion loss factor. Polytetrafluoroethylene (PTFE) is a known friction modifier, has a low friction coefficient, and is extensively used to reduce the friction coefficient and wear rate (with engineering plastics to improve tribological properties). It is known for fluoroelastomers and engineering plastics that fine particles of PTFE have the greatest effect on improving the specified properties. Here, oriented, fibrillated network morphology of PTFE in PS matrix was prepared. The wear studies show a large reduction in both the friction coefficient (45% reduction) and the wear rate (2% incorporation of PTFE leads to a 49% reduction). But the friction coefficients do not show any significant change on increasing PTFE. A similar observation was made for the wear rate. Scanning electron microscope (SEM) images of the worn surfaces show a crack tip bridging mechanism, and it was observed that with the increase in PTFE content, the extent of crack tip bridging increases. This extensive improvement may be attributed to the unique morphology of the blend system.
机译:聚苯乙烯(PS)是一种重要的商品塑料。但是,它不适合作为摩擦学应用的材料。它在与金属表面接触时具有相对较高的摩擦系数,并且具有较高的磨损损耗因子。聚四氟乙烯(PTFE)是一种已知的摩擦改进剂,具有低摩擦系数,被广泛用于降低摩擦系数和磨损率(使用工程塑料可改善摩擦性能)。众所周知,对于氟弹性体和工程塑料而言,PTFE细颗粒对改善特定性能的影响最大。在此,制备了在PS基质中PTFE的定向的,原纤化的网络形态。磨损研究表明,摩擦系数(减少了45%)和磨损率(减少了2%的PTFE导致49%的减少)都大大降低了。但是,随着PTFE的增加,摩擦系数没有明显变化。对于磨损率也进行了类似的观察。磨损表面的扫描电子显微镜(SEM)图像显示了裂纹尖端的桥接机理,并且观察到随着PTFE含量的增加,裂纹尖端的桥接程度增加。这种广泛的改进可以归因于共混体系的独特形态。

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