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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >In-situ monitoring of friction surfaces and friction modelling by surface pattern analysis
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In-situ monitoring of friction surfaces and friction modelling by surface pattern analysis

机译:通过表面图案分析原位监测摩擦表面和摩擦模型

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摘要

In-situ monitoring of wear and friction surfaces is difficult to achieve because friction occurs between solid surfaces, often even in the presence of a lubricant. To understand a tribological system, it is important to determine how the wear surfaces change over time. In many methods, the surfaces are observed only after tribological tests are completed and the test piece is removed from the tribotester. To overcome these limitations, we have developed a laser-strobe technique that records surface photographs of the same region of the wear surface during each cycle. The recorded photographs were analyzed by pattern matching methods and correlations between the images were determined. Characteristic patterns corresponding to friction track sizes and shapes were identified and used to perform the correlation calculations. A model was also proposed to understand the results of the friction and wear test. The model assumed that the surface consists of small domains and that the friction patterns are generated by the interaction of these domains. Preliminary results indicate that the model effectively describes surface modification due to wear and friction.
机译:很难对磨损和摩擦表面进行原位监控,因为即使在存在润滑剂的情况下,在固体表面之间也会发生摩擦。要了解摩擦学系统,确定磨损表面随时间的变化非常重要。在许多方法中,仅在完成摩擦学测试并将测试件从三胎仪中取出后才能观察表面。为了克服这些限制,我们开发了一种激光频闪技术,该技术可在每个循环中记录磨损表面相同区域的表面照片。通过模式匹配方法分析记录的照片,并确定图像之间的相关性。识别出对应于摩擦轨迹尺寸和形状的特征图案,并将其用于进行相关性计算。还提出了一个模型来了解摩擦和磨损测试的结果。该模型假定表面由小区域组成,并且摩擦图案是由这些区域的相互作用产生的。初步结果表明,该模型有效地描述了由于磨损和摩擦引起的表面改性。

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