Study of wear performance of wheel and rail steels under dry sliding conditions

T. Leso, CW Siyayisa, R. Mostert, J. Moema
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Abstract

The demand for efficient railway services has significantly increased in the past years due to an increased demand for the high-speed transportation of goods with high loads. The increase in loads and velocities has resulted in increased problems associated with rolling contact fatigue (RCF), rolling and sliding wear on the wheel and rail materials causing a reduction of service life of wheel/rail systems. Rail operating companies spend significant funds in maintenance and replacing damaged rails and wheels caused by wear. In addition, unscheduled maintenance due to wear and RCF often lead to poor availability of railway networks. For this study, dry sliding wear was investigated on wheel and rail steels using RTEC Multi-Function Tribometer. The results demonstrated that the rig was successful in simulating sliding wear, and that the fractions of the wear components could be varied, and it also provided instrumentation. Information on coefficient of friction against sliding distance and applied force were obtained which were used to compare sliding wear performance of both wheel and rail steels. The wheel was found to perform better than the rail under the same conditions due to its high initial hardness values and smaller interlamellar spacing.
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干滑动条件下轮轨钢磨损性能研究
由于对高负荷货物高速运输的需求增加,对高效铁路服务的需求在过去几年中显著增加。载荷和速度的增加导致与滚动接触疲劳(RCF)相关的问题增加,轮轨材料的滚动和滑动磨损导致轮轨系统使用寿命的减少。铁路运营公司花费大量资金用于维护和更换因磨损而损坏的轨道和车轮。此外,由于磨损和RCF导致的计划外维护经常导致铁路网的可用性差。本研究采用RTEC多功能摩擦计对轮轨钢的干滑动磨损进行了研究。结果表明,该钻机成功地模拟了滑动磨损,并且磨损成分的分数可以变化,并且它还提供了仪器。获得了摩擦系数与滑动距离和作用力的关系,并将其用于比较轮轨钢和轮轨钢的滑动磨损性能。由于初始硬度值高,层间间距小,在相同条件下,轮毂的性能优于钢轨。
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