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Observing early stage rail axle bearing damage

机译:观察早期导轨轴轴承的损坏

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摘要

Rail axle-bearing failure is a serious issue that can affect passenger safety and generate large costs for operators from penalties, recovery, reduced train availability and repairs. Southeastern have fitted bearing sensors to their Electrostar fleet; these sensors identify rail axle-bearing degradation. In this paper (presented at ICEFA VI) we introduce an on-going study where ex-situ rail axle bearings with recorded vibration histories are being forensically examined. The ultimate aims of this work are (1) to link vibration signatures to levels of physical damage and (2) to identify any common factors that are causing bearing failures. The current work presents results from one removed bearing; this work highlights the methods and techniques being used to measure and quantify the physical damage, which include profilometry, X-ray tomography and metallography. The bearing described herein presented large subsurface white etched layers, rolling contact fatigue crack propagation and evidence of electrical arcing damage. (C) 2015 Elsevier Ltd. All rights reserved.
机译:铁路轴瓦轴承故障是一个严重的问题,可能会影响乘客的安全,并因罚款,追偿,火车可用性下降和维修等问题而给运营商造成高昂成本。东南航空公司已为其Electrostar机队安装了轴承传感器。这些传感器可识别导轨轴的退化。在本文(在ICEFA VI中提出)中,我们介绍了一项正在进行的研究,其中对具有记录的振动历史的异地铁路轴瓦轴承进行了法医检验。这项工作的最终目的是(1)将振动信号与物理损坏程度联系起来;(2)确定导致轴承故障的任何常见因素。当前的工作提出了一个拆卸轴承的结果。这项工作重点介绍了用于测量和量化物理损伤的方法和技术,包括轮廓测量,X射线断层扫描和金相学。本文所述的轴承呈现出较大的地下白色蚀刻层,滚动接触疲劳裂纹扩展以及电弧损坏的迹象。 (C)2015 Elsevier Ltd.保留所有权利。

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