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Wear mechanisms and transitions in railway wheel steels

机译:铁路轮钢的磨损机制和过渡

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摘要

The need to improve safety and reduce costs means that new specifications are being imposed on railway wheel wear. These mean that more durable wheel steels are required. In order to develop such materials, a greater understanding is needed of the wear mechanisms and transitions occurring in wheel steels. In this work, twin-disc wear testing has been carried out to study the wear characteristics of R8T railway wheel steel. The results have indicated that, compared with previous wheel steels, R8T offers greater wear resistance. Three wear regimes were identified; mild, severe, and catastrophic. Wear rates were seen to increase steadily initially and then to level off, before increasing rapidly as the severity of the contact conditions increased. This paper is concerned with the form of the data and the reasons for the transitions. Analysis of the contact conditions indicated that the first transition in the wear rate was caused by the change from partial slip to full slip conditions at the disc interface. Temperature calculations for the contact showed that the large increase in wear rates seen at the second wear transition may result from a thermally induced reduction in yield strength and other material properties. This improved understanding will help in progressing towards the aim of eventually attaining a wear modelling methodology reliant on material properties rather than wear constants derived from testing.
机译:对提高安全性和降低成本的需求意味着对铁路车轮的磨损提出了新的规范。这意味着需要更耐用的车轮钢。为了开发这种材料,需要对轮钢中发生的磨损机理和过渡有更深入的了解。在这项工作中,已经进行了双盘磨损测试以研究R8T铁路车轮钢的磨损特性。结果表明,与以前的车轮钢相比,R8T具有更高的耐磨性。确定了三种磨损方式;轻度,重度和灾难性。随着接触条件的严重性增加,磨损率开始稳定增长,然后趋于平稳。本文关注数据的形式以及过渡的原因。接触条件的分析表明,磨损率的第一个转变是由圆盘界面处的部分滑移状态变为全滑移状态引起的。触点的温度计算表明,在第二次磨损过渡时看到的磨损率大幅度增加可能是由于热引起的屈服强度和其他材料性能下降所致。这种更好的理解将有助于最终实现一种磨损建模方法,该方法依赖于材料特性而不是依赖于测试得出的磨损常数。

著录项

  • 作者

    R Lewisa; R S Dwyer-Joyce;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"english","id":9}
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