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Diffuse ultrasonic wave-based structural health monitoring for railway turnouts

机译:基于超声波基于铁路投票的基于超声波的结构健康监测

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摘要

Real-time damage evaluation is a critical step to warrant the integrity of turnout systems in railway industry. Nevertheless, existing structural health monitoring (SHM) approaches, despite their proven effectiveness in laboratory demonstration, are restricted from in-situ implementation in engineering practice. Based upon the continued endeavors of the authors in developing SHM approaches and exploring real world applications, an in-situ SHM approach, exploiting active diffuse ultrasonic waves (DUW) and a benchmark-less method, has been developed and implemented in a marshalling station in China. When trains passing a railway turnout, the train-induced loads on the rail track can lead to the growth of defects in the rail, and such growth disturbs the ultrasound traversing at the defect and gives rise to discrepancies between the DUW signals acquired before and after the train's passage. On this basis, a damage index, making use of the defect growth-induced changes in DUW signals, is proposed to identify the presence of defect. The probability of defect growth induced by the train-related load can be used to assess the severity of the defect. Via an online diagnosis system, conformance tests are implemented in Chengdu North Marshalling Station, in which defects in switch rails are identified and the health status of in-service rail tracks are continuously monitored. The results have demonstrated the effectiveness and reliability of DUW-driven SHM towards real world railway turnout applications.
机译:实时伤害评估是保证铁路行业诚信系统诚信的重要一步。尽管如此,尽管在实验室示范中经过验证的有效性,但现有的结构健康监测(SHM)方法受到在工程实践中的原位实施的限制。基于作者在开发SHM方法和探索现实世界应用方面的持续努力,已经在编组站中开发和实施了利用活跃的漫射超声波(DUW)和基准测试方法的原位SHM方法中国。当火车通过铁路道岔时,轨道轨道上的火车诱导的载荷可以导致轨道中的缺陷的生长,并且这种生长会使超声波穿过缺陷,并在之前和之后产生的DUW信号之间产生差异火车的段落。在此基础上,提出了利用DUW信号中的缺陷生长引起的变化的损伤指数,以确定存在缺陷。列车相关载荷引起的缺陷生长的可能性可用于评估缺陷的严重程度。通过在线诊断系统,符合测试在成都北编组站实施,其中识别了开关轨道中的缺陷,并且不断监测在线轨道轨道的健康状况。结果表明,DUW驱动的SHM对现实世界铁路营道应用的有效性和可靠性。

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