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Friction and wear behaviour of rolling-sliding steel contacts

机译:滚动滑动钢触头的摩擦和磨损行为

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摘要

Improving the total life cycle costs and safety of trains are current research topics that hold great interest for those who build, maintain and operate trains. The maintenance interval for both wheels and rails has become a major issue in reducing costs and increasing safety and has encouraged the development of new tools for predicting the evolution of wear in order to establish a convenient maintenance schedule. These new tools require the synergy of dynamic analysis and the development of suitable wear models. Rail/wheel wear depends on the material properties resulting from a competition between contact fatigue and sliding wear. Therefore, all the contact conditions affecting the contact stress distribution will determine the wear behaviour. The current research paper investigates the effect of contact conditions on friction and wear behaviour of carbon and low alloy rail/wheel steels. Two-disc rolling-sliding tests were done to study the effect of the creep ratio, contact pressure and tangential speed on the resulting traction coefficient and amount of wear. Scanning and optical microscopy and the evolution of micro hardness were used to observe crack growth beneath the contact surface and to evaluate the strain-hardening effect, induced by contact stresses. Further rolling-sliding and unidirectional sliding tests were performed to assess the wear of the wheel rims. Results were analysed and discussed, comparing the effectiveness of a classical approach based on Archard's equation, with models involving the energy dissipated by friction.
机译:当前的研究主题是提高总生命周期成本和火车安全性,这对于建造,维护和运营火车的人们引起了极大的兴趣。轮轨的维护间隔已成为降低成本和提高安全性的主要问题,并鼓励开发用于预测磨损发展的新工具,以建立方便的维护时间表。这些新工具需要动态分析和开发合适的磨损模型的协同作用。轨道/车轮的磨损取决于接触疲劳和滑动磨损之间的竞争所产生的材料性能。因此,所有影响接触应力分布的接触条件都将决定磨损行为。当前的研究论文研究了接触条件对碳钢和低合金钢轨/车轮钢的摩擦和磨损行为的影响。进行了两盘滚动滑动试验,以研究蠕变比,接触压力和切向速度对所得牵引系数和磨损量的影响。使用扫描和光学显微镜以及显微硬度的演变来观察接触表面下方的裂纹增长,并评估由接触应力引起的应变硬化效果。进行了进一步的滚动滑动和单向滑动测试,以评估轮辋的磨损。分析和讨论了结果,将基于Archard方程的经典方法与涉及通过摩擦耗散能量的模型的有效性进行了比较。

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