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首页> 外文期刊>Journal of thermal stresses >Effects of thermal load on wheel-rail contacts: A review
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Effects of thermal load on wheel-rail contacts: A review

机译:热负荷对轮轨接触的影响:综述

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This article presents a technical review on the effects of thermal loads evolved at the wheel-rail-brake contact interfaces. These dynamic contact interfaces develop heat transfer conditions of widely varied thermal level. Their modeling to identify the sources for a variety of defect formation, observable on wheel tread or rail surface, is very important. The railway system, in general, has to bear axle load, friction load, and thermal load arising from their contact conditions in addition to traction and dynamic loads. The defects arising from the interaction of thermal load and other loadings may be identified as hot spots, shelling, spalling, rolling contact fatigue (RCF), and corrugation. The mechanisms for the formation of such defects are pivoted over the existing thermal environment of dynamic interacting surfaces. This review summarizes the works of early investigations and recent advances in modeling the heat transfer conditions required to estimate the temperature distribution at the contact zone. The heat partitioning method for both drag and stop braking conditions, in the presence of rail chill effect, is emphasized. Thermal gradient, introduced by localized temperature rise in the contact zone, in the presence of variable friction coefficient, promotes the RCF process. These alter the residual stresses in the contact region to cause a structural shakedown, aggravate plastic flow and activates ratchetting phenomenon in rails. The evolution of thermomechanical surface and subsurface fatigue cracks are also discussed for the completeness of this article. The effect of all such defect formation, emerging from thermal loading condition, and their countermeasures for defect mitigation are presented in this review. This abridged technical documentation envisions attracting more research in the area to improve wheel-rail set design and performance standards to extend enhanced safety and comfort to rail transport operation. It is opined that the thermomechanical loading, their effects on promoting defect formation and propagation should be studied in combination instead of the current practice of treating them separately.
机译:本文对轮毂-制动器-制动器接触界面处产生的热负荷的影响进行了技术综述。这些动态接触界面会产生各种热水平的传热条件。他们的模型非常重要,可以识别出在轮胎胎面或轨道表面上可观察到的各种缺陷形成的来源。通常,铁路系统除了牵引力和动态载荷外,还必须承受轴载荷,摩擦载荷和接触条件引起的热载荷。由热负荷和其他负荷的相互作用引起的缺陷可以识别为热点,脱壳,剥落,滚动接触疲劳(RCF)和波纹。形成此类缺陷的机制围绕动态相互作用表面的现有热环境展开。这篇综述总结了早期研究的工作和在模拟估计接触区域温度分布所需的传热条件方面的最新进展。强调了在存在铁轨冷效应的情况下,用于拖动和停止制动条件的热量分配方法。在存在可变摩擦系数的情况下,接触区域中局部温度升高引起的热梯度会促进RCF过程。这些会改变接触区域中的残余应力,从而导致结构变形,加剧塑性流动并激活钢轨中的棘轮现象。为了完整起见,还讨论了热机械表面和地下疲劳裂纹的演变。这篇综述介绍了所有这样的缺陷形成的影响,这些缺陷是由于热负荷条件而产生的,以及它们减轻缺陷的对策。这份精简的技术文档设想将吸引该领域的更多研究,以改善轮轨套件设计和性能标准,从而将增强的安全性和舒适性扩展到铁路运输运营中。认为应该综合研究热机械载荷,其对促进缺陷形成和扩散的影响,而不是目前单独处理它们的实践。

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