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Rail-wheel interaction monitoring using Acoustic Emission: A laboratory study of normal rolling signals with natural rail defects

机译:使用声发射监测轮-轮相互作用:带有自然铁轨缺陷的正常滚动信号的实验室研究

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摘要

This paper presents a laboratory study on the Acoustic Emission (AE) generated during railway wheel-rail track interaction, with a view to developing methods of in situ rail-wheel interaction monitoring using rail-mounted sensors. It is known that the physical processes of impact and wear generate AE and it was therefore expected that axle loads, speed and traction would influence the AE generated by an interaction and that the characteristics of "normal" interaction would be affected by wheel and/or track defects and/or any misalignment between rail and track.rnA set of laboratory experiments were carried out on a scaled test rig to characterise the continuous AE generated by a wheel rolling on a rail and, secondarily, to assess the effect on the AE characteristic of the natural defects present on the contact profile of the rail. The natural defects were of a relatively minor nature and their assessment serves as part of the calibration of background AE for experiments with more significant simulated defects.rnA simplified analytical model, devised for AE waves propagating from a moving source, based on "vehicle" speed and wave damping coefficients, has been developed for the test track and fitted to the measured results. As a wheel rolls towards a sensor and then away from the sensor the measured AE generally rises and falls in a predictable way. The effects of wheel and rail surface features were found to introduce deviations from this "background", and a method to identify the location of surface defects, based on identifying peaks above the background is also demonstrated.
机译:本文提出了一项在铁路轮轨相互作用过程中产生的声发射(AE)的实验室研究,以期开发使用轨道安装式传感器进行原位轮轮相互作用监测的方法。众所周知,冲击和磨损的物理过程会产生AE,因此可以预期,轴负载,速度和牵引力会影响由相互作用产生的AE,并且“正常”相互作用的特性会受到车轮和/或车轮的影响。轨道缺陷和/或轨道与轨道之间的任何未对准。在比例试验台上进行了一组实验室实验,以表征车轮在轨道上滚动产生的连续AE,其次,评估对AE特性的影响轨道接触轮廓上存在的自然缺陷。天然缺陷的性质相对较小,其评估是对背景AE进行校准的一部分,用于具有更大模拟缺陷的实验。rn一种简化的分析模型,基于“车辆”速度,针对从移动源传播的AE波而设计并为测试轨迹开发了波阻尼系数和波阻尼系数,并将其与测量结果相匹配。当车轮朝传感器滚动然后离开传感器时,测得的AE通常以可预测的方式上升和下降。发现车轮和铁路表面特征的影响导致偏离该“背景”,并且还展示了一种基于识别背景之上的峰值来识别表面缺陷位置的方法。

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  • 来源
    《Mechanical systems and signal processing》 |2010年第1期|256-266|共11页
  • 作者单位

    School of Engineering and Physical Sciences, Heriot-Watt University, Riccarton, Edinburgh, Scotland EH14 4AS, UK;

    School of Engineering and Physical Sciences, Heriot-Watt University, Riccarton, Edinburgh, Scotland EH14 4AS, UK;

    School of Engineering and Physical Sciences, Heriot-Watt University, Riccarton, Edinburgh, Scotland EH14 4AS, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    acoustic emission; rail-wheel interaction; rail defects;

    机译:声发射轮-轮相互作用;铁路缺陷;

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