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Synchrotron X-ray measurement of residual strain within the nose of a worn manganese steel railway crossing

机译:同步加速器X射线测量磨损的锰钢铁路道口的鼻子内的残余应变

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摘要

Switches and crossings are an integral part of any railway network. Plastic deformation associated with wear and rolling contact fatigue due to repeated passage of trains cause severe damage leading to the formation of surface and sub-surface cracks which ultimately may result in rail failure. Knowledge of the internal stress distribution adds to the understanding of crack propagation and may thus help to prevent catastrophic rail failures. In this work, the residual strains inside the bulk of a damaged nose of a manganese railway crossing that was in service for five years has been investigated by using differential aperture synchrotron X-ray diffraction. The main purpose of this paper is to describe how this method allows non-destructive measurement of residual strains in selected local volumes in the bulk of the rail. Measurements were conducted on the transverse surface at a position about 6.5 mm from the rail running surface of a crossing nose. The results revealed the presence of significant compressive residual strains along the running direction of the rail.
机译:转换和交叉口是任何铁路网络的组成部分。由于火车反复通过而引起的与磨损和滚动接触疲劳相关的塑性变形会导致严重损坏,从而导致表面和亚表面裂纹的形成,最终可能导致轨道故障。对内部应力分布的了解有助于加深对裂纹扩展的理解,从而有助于防止灾难性的铁路故障。在这项工作中,已经使用差分孔径同步加速器X射线衍射研究了使用了五年的锰铁路道口受损鼻子的主体内部的残余应变。本文的主要目的是描述这种方法如何允许对铁轨主体中选定局部体积中的残余应变进行无损测量。在距横梁的轨道运行表面约6.5 mm的横向表面上进行测量。结果表明,沿钢轨的运行方向存在明显的压缩残余应变。

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