Trend analysis of rail corrugation in metro lines considering friction memory and interface effects

IF 0.6 4区 工程技术 Q4 MECHANICS Journal of Theoretical and Applied Mechanics Pub Date : 2023-04-24 DOI:10.15632/jtam-pl/163077
Zhiqiang Wang, Z. Lei
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Abstract

In order to investigate the evolution trend of rail corrugation under the action of slip and interface effects, stick-slip vibration characteristics of a wheel-rail system in different line conditions have been analyzed in detail by establishing a complete three-dimensional coupling metro vehicle-track numerical model and considering the friction memory effect characterizing the slip rate and state dependence as well as interface effect. The results show that on a straight line, the friction memory effect has less influence on the wheel-rail contact stick-slip characteristics, and the values and variation ranges of adhesion coefficients and creepages are relatively small, indicating that it is difficult for the wheel-rail system to have stick-slip vibration, which makes it less likely to form rail corrugation. On a curved line, the fluctuation amplitudes of the inside longitudinal stick-slip characteristics and the outside transverse stick-slip characteristics are relatively large, which illustrates that the inside wheel-rail system is more prone to stick-slip vibration in the longitudinal direction, while the outside wheel-rail system is more prone to stick-slip vibration in the transverse direction, thus leading to different forms of rail corrugation. The friction memory effect reduces longitudinal and transverse creepages of both the inside and outside wheel-rail systems, demonstrating that the friction memory effect can moderate the relative wheel-rail slip and thus reduce the development rate of rail corrugation. The interface effect makes longitudinal and transverse adhesion coefficients of the wheel-rail system tend to homogenize and mostly decrease, while the corresponding creepages tend to increase. Although an increase in the creepage induces an enhanced interface slip, a smaller adhesion coefficient does not cause a significant change in the corrugation evolution. Friction memory and interface effects can cause the wheel-rail contact adhesion area ratio to increase, thus making the contact stick-slip distribution tend to homogenize, which is beneficial to reduce wear in the contact area and promote wear to homogenize.
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考虑摩擦记忆和界面效应的地铁轨道波纹趋势分析
为了研究在滑移和界面效应作用下轨道波纹的演变趋势,通过建立完整的地铁车辆-轨道三维耦合数值模型,考虑表征滑移率、状态依赖性和界面效应的摩擦记忆效应,对轮轨系统在不同线路条件下的粘滑振动特性进行了详细分析。结果表明:在直线上,摩擦记忆效应对轮轨接触粘滑特性的影响较小,黏着系数和蠕滑量的取值和变化范围较小,表明轮轨系统难以发生粘滑振动,不易形成轨纹;在曲线上,内部纵向粘滑特性和外部横向粘滑特性的波动幅度较大,说明内部轮轨系统在纵向上更容易发生粘滑振动,而外部轮轨系统在横向上更容易发生粘滑振动,从而导致不同形式的钢轨波纹。摩擦记忆效应降低了轮轨内外系统的纵向和横向蠕变,表明摩擦记忆效应可以调节轮轨相对滑移,从而降低轨道波纹的发展速度。界面效应使轮轨系统的纵向和横向粘着系数趋于均匀化,且大部分减小,而相应的蠕变趋于增大。虽然蠕滑的增加会引起界面滑移的增强,但较小的附着系数不会引起波纹演化的显著变化。摩擦记忆和界面效应使轮轨接触粘着面积比增大,从而使接触粘滑分布趋于均匀化,有利于减少接触区域的磨损,促进磨损均匀化。
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来源期刊
CiteScore
1.40
自引率
14.30%
发文量
22
审稿时长
6 months
期刊介绍: The scope of JTAM contains: - solid mechanics - fluid mechanics - fluid structures interactions - stability and vibrations systems - robotic and control systems - mechanics of materials - dynamics of machines, vehicles and flying structures - inteligent systems - nanomechanics - biomechanics - computational mechanics
期刊最新文献
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