轨道斜度对城市交通急转弯高轨侧磨损的影响

W. Shaofeng, Qian Yu, Feng Qingsong, L. Xinwei, Guo-sheng Feng
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引用次数: 2

摘要

城市轨道交通的流量和运行速度的增加,加速了轨道构件的退化。钢轨的磨损,特别是高速钢轨在急弯处的延伸侧磨损,是钢轨过早失效的主要原因。研究钢轨侧磨损的影响因素,寻求延长钢轨使用寿命和降低维修成本的可能解决方案。钢轨磨损是由车轮和钢轨之间的剧烈接触引起的。轨道不能直接影响轮轨接触,其数值随交通机构的选择而变化。世界上有几种流行的铁路时刻表,即1:40、1:30、1:20等。然而,最大限度地减少钢轨磨损的最佳钢轨斜面仍然是未知的。基于车轨多体动力学,对钢轨斜面对高轨侧磨损的影响进行了数值参数分析。首先计算轮轨接触状态,列车通过具有不同轨道倾角的急转弯。然后利用Archard磨损模型对高轨磨损值进行量化。本研究的数值模拟涵盖了高轨侧磨损从新轨状态到重度磨损状态发展的全过程。这项研究的结果可能有助于为交通轨道的急转弯设置最佳斜线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Rail Cant on High Rail Side Wear on Sharp Curve of Urban Transit
The increasing of traffic and operation speed in urban transits has accelerated the degradation of track components. Rail wear, especially extended side wear of the high rail on sharp curves has caused rail premature failure. The factors that contributing to the rail side wear should be investigated in order to seek possible solutions to extend the rail service life and reduce maintenance cost. The rail wear is caused by the aggressive contact between the wheel and the rail. Rail cant directly affects the wheel-rail contact and the values varies depending on the choice of the transit agencies. There are several popular rail cants cross the world, namely 1:40, 1:30, 1:20, and so on. However, the optimal rail cant to minimize rail wear remains unknown. This study performs a numerical parametric analysis on the effect of rail cant on high rail side wear based on the vehicle-track multi-body dynamics. The wheel-rail contact state is calculated first with trains passing sharp curves with different rail cants. Then the high rail wear value is quantified by the Archard wear model. The numerical simulation in this study covers the whole process of the development of high rail side wear from the new rail status to the heavily worn status. The findings from this study could potential help to set the optimal cant for sharp curves in transit tracks.
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