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Wear and frictional mechanisms of copper-based bearing alloys

机译:铜基轴承合金的磨损和摩擦机理

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摘要

The present study investigated the role of alloy microstructure and surface roughness on wear and friction behavior of leaded and unleaded tin bronzes. Ball-on-disk experiments were carried out under dry conditions with steel balls sliding against bronze disks. Scanning electron microscopy (SEM), energy dispersive electron microscopy (EDX), x-ray photoelectron spectroscopy (XPS) and Auger electron spectroscopy were performed to analyze the sliding tracks and the ball scars. The wear reducing effect of lead was associated to the formation of an oxidized lead rich layer. When no such film formed on the leaded bronze wear was more severe than in case of unleaded bronze. Nevertheless, the presence of lead in the alloy was a necessary but not sufficient condition to obtain a smeared layer and thus a lubricating effect of the leaded alloy. Two mechanistic hypotheses were formulated to explain the formation of the smeared layer.
机译:本研究调查了合金微结构和表面粗糙度对含铅和无铅锡青铜的磨损和摩擦行为的影响。圆盘球实验是在干燥条件下进行的,钢球在青铜盘上滑动。进行了扫描电子显微镜(SEM),能量分散电子显微镜(EDX),X射线光电子能谱(XPS)和俄歇电子能谱分析滑轨和球疤。铅的减少磨损作用与氧化的富铅层的形成有关。如果在含铅青铜上没有形成这种膜,则磨损要比无铅青铜严重。然而,合金中铅的存在是获得涂污层并因此获得铅合金的润滑效果的必要但非充分条件。提出了两个机械假说来解释涂片层的形成。

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