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Evaluation of flash temperatures of a composite elastomer tip seal with a dry sliding conditions in contact with a high carbon steel plate

机译:复合弹性体尖端密封件的闪光温度评价用干滑动条件与高碳钢板接触

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One of the most important issues in dry sliding contact is the frictional heat generated. This study investigates the flash temperatures caused by frictional heating of sliding parallel pairs: a high performance fluoroelastomer composite with a high carbon steel plate. These materials have industrial applications and in particular as the main contacting components within a scroll expander system. The expected flash temperature values of the studied contacts are important to be revealed in order to predict the wear mechanisms associated with excessive contact temperatures caused by sliding friction. Two different roughness profiles of the high carbon steel plate were used. The flash temperatures generated by the asperities contact of the tested materials were investigated as a function of the friction coefficient, the applied pressure and the sliding velocity, using a reciprocating tribometer. Initially physical experimental observations of the specific contact produced with a high- precision thermal camera integrated with a sliding micro-friction machine were conducted. Analytical results using conventional mathematical methodology were also produced. The analytical and experimental findings were then compared indicating interesting correlations within the flash temperatures and the experimental conditions. The most influential parameter for the flash temperature rise is determined.
机译:一个在干滑动接触的最重要的问题是所产生的摩擦热。本研究探讨由于滑动引起的平行对摩擦加热的闪光温度:高性能含氟弹性体复合材料的高碳钢板。这些材料具有工业应用和尤其是作为涡旋式膨胀机系统内的主接触组件英寸所研究的触点的预期闪蒸温度的值是重要的,以预测引起的滑动摩擦过大的接触温度相关联的磨损机制来被揭示。使用了高碳钢板的两个不同的粗糙度曲线。通过被测材料的凹凸接触而产生的闪光温度进行了调查作为摩擦系数的函数,施加的压力和滑动速度,使用往复摩擦计。用高精度的热照相机具有滑动微摩擦机集成制造的特定接触的最初物理实验观察进行的。使用传统的数学方法分析结果也产生了。分析和实验结果然后比较表示闪光的温度和实验条件中有趣的相互关系。对于闪光灯的温度上升的最有影响力的参数被确定。

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