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Rolling stock condition monitoring using wheel/rail forces

机译:使用车轮/轨道力监控机车车辆状态

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摘要

Railway vehicles are efficient because of the low resistance in the contact zone between wheel and rail. In order to remain efficient, train operators and infrastructure owners need to keep rails, wheels and vehicles in an acceptable condition. Wheel wear affects the dynamic characteristics of vehicles and the dynamic force impact on the rail. The shape of the wheel profile affects the performance of railway vehicles in different ways. Wheel condition has historically been managed by identifying and removing wheels from service when they exceed an impact threshold. Condition monitoring of railway vehicles is mainly performed using wheel impact load detectors and truck performance detectors. These systems use either forces or stress on the rail to interpret the condition. This paper will show measurements taken at the research station outside Lulea in northern Sweden. The station measures the wheel/rail forces, both lateral and vertical, at the point of contact in a curve with a 484 m radius at speeds of up to 100 km/h. Data are analysed to show differences for various wheel positions and to determine the robustness of the system.
机译:铁路车辆之所以高效,是因为车轮与铁路之间的接触区域的阻力较低。为了保持效率,火车运营商和基础设施所有者需要将铁轨,车轮和车辆保持在可接受的状态。车轮磨损会影响车辆的动力特性,并且会影响动力对轨道的影响。车轮轮廓的形状以不同方式影响铁路车辆的性能。过去,车轮状况是通过在超过冲击阈值时识别并从服务中移除车轮来管理的。铁路车辆的状态监测主要使用车轮冲击载荷检测器和卡车性能检测器进行。这些系统使用在轨道上的力或压力来解释情况。本文将展示在瑞典北部吕勒奥郊外的研究站进行的测量。该站以最大100 km / h的速度在半径为484 m的弯道上的接触点处测量横向和纵向的车轮/轨道力。分析数据以显示各种车轮位置的差异并确定系统的耐用性。

著录项

  • 来源
    《Insight》 |2012年第8期|p.451-455|共5页
  • 作者单位

    University of Technology, Luled, SWE-97I 87, Sweden;

    University of Technology, Luled, SWE-97I 87, Sweden;

    University of Technology, Luled, SWE-97I 87, Sweden;

    University of Technology, Luled, SWE-97I 87, Sweden;

    University of Technology, Luled, SWE-97I 87, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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