An experimental measurement and numerical calculation method on friction temperature rise of sliding contact pairs - taking rail/wheel contact as an example

IF 0.6 Q4 ENGINEERING, MECHANICAL Journal of Measurements in Engineering Pub Date : 2023-03-13 DOI:10.21595/jme.2023.22974
Yunpeng Wei, Yaping Wu, Zhidong Chen
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Abstract

The analysis of rail/wheel sliding friction heat is a very important research field. The numerical simulation is often adopted to calculate the friction heat, and experimental method is relatively few. In this paper, an experimental machine is designed to simulate the rail/wheel sliding contact. At the same time, a rail/wheel contact wear model and a friction heat transfer model are established. The characteristics of temperature on rail/wheel sliding contact are analyzed by experimental test and numerical calculation. The research results show that the temperature rise of wheel and rail is quick in the initial sliding contact stage, then gradually slows down. The temperature of wheel is higher than that of rail at the same depth from the contact surface. In the initial sliding stage, the wheel temperature rises faster than the rail temperature, which is related to the size of contact surface and the concentration degree of friction heat. Moreover, the results of this paper show that the temperature values of the rail/wheel obtained through experimental test and numerical calculation are in good agreement. The experimental and numerical calculation methods used in this article can be adopted to analyze the contact problems of other sliding friction pairs.
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滑动接触副摩擦温升的实验测量与数值计算方法——以轨轮接触为例
轨道/车轮滑动摩擦热分析是一个非常重要的研究领域。摩擦热的计算通常采用数值模拟的方法,实验方法相对较少。本文设计了一台模拟轨道/车轮滑动接触的实验机。同时,建立了轨道/车轮接触磨损模型和摩擦传热模型。通过试验和数值计算,分析了轨轮滑动接触的温度特性。研究结果表明,轮轨接触初期温升较快,然后逐渐减缓。在距离接触面相同深度处,车轮的温度高于钢轨的温度。在滑动初期,车轮温度的上升速度快于轨道温度,这与接触面的大小和摩擦热的集中程度有关。此外,本文的结果表明,通过实验测试和数值计算获得的轨道/车轮的温度值是一致的。本文所用的实验和数值计算方法可用于分析其他滑动摩擦副的接触问题。
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来源期刊
Journal of Measurements in Engineering
Journal of Measurements in Engineering ENGINEERING, MECHANICAL-
CiteScore
2.00
自引率
6.20%
发文量
16
审稿时长
16 weeks
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