Analysis of the Relationship between Rail Cant and Track Gauge Based on the Data Obtained by Track Recording Cars

Damir I. Gallyamov, Dmitry Ovchinnikov
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Abstract

The increase in the service life of track superstructure has always been an important task since this allows reduction in the cost of repairs and current maintenance of the track.The objective of the work is to determine the mutual influence of the rail cant and the track gauge based on the results of measurements carried out by track recording cars, as well as their impact on the stress-strain state of the rail. The analysis was based on statistical and the finite element methods. Using statistical methods, it was determined that the rail cant and track gauge values do not have a normal distribution and have a weak feedback. The reasons were explained in the conclusions.To determine with the finite element method contact stresses in the rail head on the track sections available in the sample, with different combinations of rail cant and track gauge, a model with full geometric similarity was developed.The results obtained from the calculations demonstrate that the deviation of the cant within the range from 1/15 to 1/30 leads to an increase in stresses by more than 20 %, while changing the track gauge has a weak effect on the stress-strain state of the rail head. The maximum increase in contact stresses, at the analysed section, was 97 %, with a cant of 1/990 and a track gauge of 1526 mm.The growth of contact stresses leads to the formation of fatigue cracks and, as a consequence, to the defects and then to replacement of the rail. To increase the service life of the rails, it is recommended to monitor the condition of fasteners and compliance with the technology of current maintenance works, as well as to reconsider tolerance of the deviation of the cant both upward and downward.
基于测轨车数据的轨距与轨距关系分析
增加轨道上层建筑的使用寿命一直是一项重要的任务,因为这可以减少轨道维修和当前维护的成本。这项工作的目的是根据轨道记录车进行的测量结果确定钢轨和轨距的相互影响,以及它们对钢轨应力-应变状态的影响。分析基于统计和有限元方法。利用统计方法,确定了钢轨斜度和轨距值不呈正态分布,具有弱反馈。结论部分解释了原因。为了利用有限元法确定试样中不同钢轨和轨距组合下的钢轨头接触应力,建立了具有完全几何相似性的模型。计算结果表明:轨距偏差在1/15 ~ 1/30范围内,会导致应力增加20%以上,而轨距变化对轨头应力应变状态的影响较弱。在分析截面上,接触应力的最大增长为97%,斜率为1/990,轨距为1526毫米。接触应力的增长导致疲劳裂纹的形成,从而导致缺陷,然后导致钢轨的更换。为了延长钢轨的使用寿命,建议监测紧固件的状况和符合当前维修工程的技术,并重新考虑斜面上下偏差的公差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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