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Characterization and modelling of piston ring-cylinder tribosystem microtopography in lubricated contact

机译:润滑接触中活塞环-气缸摩擦系统微观形貌的表征与建模

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摘要

A study of piston ring-cylinder tribological behaviour under mixed lubrication mode is usually based upon data regarding surface contact magnitudes, fluid film characteristics and resultant mixed friction forces. The present paper introduces a Fisher-Pearson statistical model to describe elastic deformation of piston rings and liners' asperities in order to derive more realistic functions that represent the aforementioned functional quantities considering real surfaces of used and worn liners. The hypothesis that the microtopography follows Gaussian law overestimates critical contact magnitudes such as: minimum film thickness-surface separation distance, deformed asperities supported load, number of contacts and contact area. Increased time of use and wear of liners decreases transverse geometrical anisotropy. Correction contact integral functions in cases of used liners' surfaces may be calculated through surface profile measurements. Theoretical and experimental results are in good agreement for the configuration considered.
机译:对混合润滑模式下的活塞环-气缸摩擦学行为的研究通常基于有关表面接触强度,流体膜特性和所得混合摩擦力的数据。本文介绍了一个Fisher-Pearson统计模型来描述活塞环和衬套的凹凸不平的弹性变形,以便考虑到已用过的和磨损的衬套的实际表面,得出更实际的函数来表示上述功能量。微观形貌遵循高斯定律的假设高估了临界接触强度,例如:最小膜厚-表面分离距离,变形的凹凸不平支撑的载荷,接触数和接触面积。使用时间的增加和衬套的磨损会降低横向几何各向异性。在使用过的衬套表面的情况下,校正接触积分函数可以通过表面轮廓测量来计算。理论和实验结果与所考虑的配置非常吻合。

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