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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Estimation of wheel/rail adhesion coefficient under wet condition with measured boundary friction coefficient and real contact area
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Estimation of wheel/rail adhesion coefficient under wet condition with measured boundary friction coefficient and real contact area

机译:利用测得的边界摩擦系数和实际接触面积估算湿润条件下的轮轨附着力系数

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摘要

This paper describes how to improve the prediction method of the adhesion coefficient by means of the experimentally estimated boundary friction coefficient obtained by two kinds of twin-disc rolling contact machines and the ratio of real contact area to nominal contact area (RCA/NCA) obtained by ultrasonic measurement. The previous prediction method that the authors had already proposed in the last paper was based on Greenwood-Tripp's rough surface contact model; however, in this study, the authors adopted Lee & Ren's rough surfaces contact model and focused on the RCA/NCA measured by ultrasonic wave in order to predict the adhesion coefficient under wet conditions with the actual surface contact conditions. As a result, regarding the tendency of adhesion coefficient decreasing with an increase of running speed, a good agreement has been obtained between the results obtained by the prediction method proposed in this study and the measured results obtained by the field-test of Japanese Shinkansen vehicle (series 200).
机译:本文介绍了如何通过两种双盘滚动接触机的实验估算边界摩擦系数以及获得的实际接触面积与标称接触面积之比(RCA / NCA)来改进粘附系数的预测方法通过超声波测量。作者在上一篇论文中已经提出的先前的预测方法是基于Greenwood-Tripp的粗糙表面接触模型。然而,在这项研究中,作者采用Lee&Ren的粗糙表面接触模型,并重点研究了超声波测量的RCA / NCA,以便预测在湿润条件下与实际表面接触条件下的粘附系数。结果,关于附着系数随行驶速度的增加而降低的趋势,在通过本研究提出的预测方法获得的结果与通过日本新干线车辆的现场测试获得的测量结果之间已经获得了很好的一致性。 (200系列)。

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