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Multiscale Friction in Lubricant-Surface Systems for High-Performance Transmissions Under Mild Wear

机译:润滑油表面系统中的多尺度摩擦,适用于温和磨损下的高性能变速箱

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摘要

The lubricant-surface system is complex in nature and can significantly affect the frictional performance of high-performance transmission systems. The complexity stems from the coupled mechanical and chemical phenomena that occur at the interfacial tooth conjunctions. A combined analytical and precision experimental approach is presented to analyse the salient parameters of the lubricant-surface system. A multiscale procedure comprising topographical measurement, pin-on-disc tribometry, atomic force microscopy in lateral force mode, X-ray photo-electron spectroscopy and continuum contact mechanics analysis under mixed non-Newtonian thermo-elastohydrodynamics is used to describe the formation of a tribo-film, as well as wear and frictional characteristics of the lubricant-surface system. The contribution of chemisorbed and physisorbed bonded tribo-film on the boundary coefficient of friction is ascertained at different physical scales. Therefore, the paper presents a novel multiscale analysis, promoting improved understanding of the complex interactions between mechanisms of friction, wear and surface chemistry.
机译:润滑剂表面系统本质上是复杂的,并且可以显着影响高性能传输系统的摩擦性能。复杂性源于在界面牙齿缀合时发生的耦合机械和化学现象。提出了一种组合的分析和精密实验方法来分析润滑剂表面系统的凸起参数。包括地形测量,引脚盘式谱法,横向力模式的原子力显微镜,X射线照片光学 - 电子光谱和连续式非牛顿热弹性动力学下的X射线光学电子谱和连续式接触机械分析的多尺度程序用于描述A的形成摩擦薄膜,以及润滑剂表面系统的磨损和摩擦特性。在不同的物理尺度上确定了化学和物质粘合的摩擦薄膜对边界摩擦系数的贡献。因此,本文提出了一种新的多尺度分析,促进了对摩擦,磨损和表面化学机制之间复杂相互作用的改进了解。

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