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Differences in Tribological Behaviors upon Switching Fixed and Moving Materials of Tribo-pairs including Metal and Polymer

机译:切换摩擦对(包括金属和聚合物)的固定和运动材料时的摩擦学行为差异

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摘要

The coefficient of friction (COF) between two materials is usually believed to be an intrinsic property of the materials themselves. In this study, metals of stainless steel (304) and brass (H62), and polymers of polypropylene (PP) and polytetrafluoroethylene (PTFE) were tested on a standard ball-on-three-plates test machine. Significantly different tribological behaviors were observed when fixed and moving materials of tribo-pairs (metal/polymer) were switched. As an example, under the same applied load and rotating speed, the COF (0.49) between a rotating PP ball and three fixed H62 plates was approximately 2.3 times higher than that between switched materials of tribo-pairs. Meanwhile, the COF between H62 and PTFE was relatively stable. The unexpected tribological behaviors were ascribed to the thermal and mechanical properties of tribo-pairs. Theoretical analysis revealed that the differences in the maximum local temperature between switching the fixed and moving materials of tribo-pairs were consistent with the differences in the tested COF. This result indicated the precise prediction of the COF of two materials is complexcity, and that thermal and mechanical properties should be properly considered in designing tribo-pairs, because these properties may significantly affect tribological performance.
机译:通常认为两种材料之间的摩擦系数(COF)是材料本身的固有属性。在这项研究中,不锈钢(304)和黄铜(H62)的金属,以及聚丙烯(PP)和聚四氟乙烯(PTFE)的聚合物在标准的三板球式试验机上进行了试验。更换固定的和移动的摩擦副(金属/聚合物)时,观察到明显不同的摩擦学行为。例如,在相同的施加载荷和转速下,旋转的PP球和三个固定的H62板之间的COF(0.49)大约是摩擦对的交换材料之间的COF(0.49)高。同时,H62和PTFE之间的COF相对稳定。意外的摩擦学行为归因于摩擦副的热和机械性能。理论分析表明,在摩擦对的固定和移动材料之间切换时,最大局部温度的差异与被测COF的差异一致。该结果表明,两种材料的COF的精确预测是复杂的,并且在设计摩擦副时应适当考虑热和机械性能,因为这些性能可能会显着影响摩擦性能。

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