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Structural health monitoring of high-speed railway tracks using diffuse ultrasonic wave-based condition contrast: theory and validation

机译:基于漫反流波的条件对比度的高速铁路轨道的结构健康监测:理论与验证

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摘要

Despite proven effectiveness and accuracy in laboratories, the existing damage assessment based on guided ultrasonic waves (GUWs) or acoustic emission (AE) confronts challenges when extended to real-world structural health monitoring (SHM) for railway tracks. Central to the concerns are the extremely complex signal appearance due to highly dispersive and multimodal wave features, restriction on transducer installations, and severe contaminations of ambient noise. It remains a critical yet unsolved problem along with recent attempts to implement SHIM in bourgeoning high-speed railway (HSR). By leveraging authors' continued endeavours, an SHM framework, based on actively generated diffuse ultrasonic waves (DUWs) and a benchmark-free condition contrast algorithm, has been developed and deployed via an all-in-one SHM system. Miniaturized lead zirconate titanate (PZT) wafers are utilized to generate and acquire DUWs in long-range railway tracks. Fatigue cracks in the tracks show unique contact behaviours under different conditions of external loads and further disturb DUW propagation. By contrast DUW propagation traits, fatigue cracks in railway tracks can be characterised quantitatively and the holistic health status of the tracks can be evaluated in a real-time manner. Compared with GUW- or AE-based methods, the DUW-driven inspection philosophy exhibits immunity to ambient noise and measurement uncertainty, less dependence on baseline signals, use of significantly reduced number of transducers, and high robustness in atrocious engineering conditions. Conformance tests are performed on HSR tracks, in which the evolution of fatigue damage is monitored continuously and quantitatively, demonstrating effectiveness, adaptability, reliability and robustness of DUW-driven SHM towards HSR applications.
机译:尽管在实验室证明了有效性和准确性,但基于导向超声波(GUW)或声发射(AE)的现有损害评估在扩展到铁路轨道的现实世界结构健康监测(SHM)时对抗挑战。关注的核心是由于高度分散和多模式波特征,限制换能器装置的极其复杂的信号外观,以及环境噪声的严重污染。随着最近在Bourgeoning高速铁路(HSR)中实施垫片的近期尝试,它仍然是一个重要的尚未解决的问题。通过利用作者的持续努力,基于积极生成的漫射超声波(DUWS)和基准或非基准条件对比度算法,已经通过一体化SHM系统开发和部署了SHM框架。小型化铅锆钛酸钛酸盐(PZT)晶圆用于在远程铁路轨道中产生和获取DUWS。轨道中的疲劳裂缝在外部负载的不同条件下显示独特的接触行为,进一步干扰DUW传播。通过对比的DUW传播特征,可以数量地表征铁路轨道中的疲劳裂缝,并且可以以实时方式评估轨道的整体健康状态。与基于GUW或AE的方法相比,DUW驱动的检查哲学对环境噪声和测量不确定性的影响,对基线信号的依赖性,使用显着减少的换能器数量,以及在可逆工程条件下的高稳健性。在HSR轨道上进行一致性测试,其中连续和定量地监测疲劳损坏的演变,展示DUW驱动SHM朝向HSR应用的有效性,适应性,可靠性和鲁棒性。

著录项

  • 来源
    《Smart structures and systems》 |2020年第2期|227-239|共13页
  • 作者单位

    Hong Kong Polytech Univ Interdisciplinary Div Aeronaut & Aviat Engn Kowloon Hong Kong Peoples R China;

    Hong Kong Polytech Univ Dept Mech Engn Kowloon Hong Kong Peoples R China;

    Hong Kong Polytech Univ Dept Mech Engn Kowloon Hong Kong Peoples R China|Hong Kong Polytech Univ Shenzhen Res Inst Shenzhen 518057 Peoples R China|Hong Kong Polytech Univ Hong Kong Branch Natl Rail Transit Electrificat & Automat Engn Tec Kowloon Hong Kong Peoples R China;

    Southwest Jiaotong Univ Railway Dev Co Ltd Chengdu 610073 Peoples R China;

    Southwest Jiaotong Univ Railway Dev Co Ltd Chengdu 610073 Peoples R China;

    Southwest Jiaotong Univ Railway Dev Co Ltd Chengdu 610073 Peoples R China;

    Monash Univ Dept Civil Engn Clayton Vic 3800 Australia;

    Monash Univ Dept Civil Engn Clayton Vic 3800 Australia;

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

    diffuse ultrasonic wave; structural health monitoring; high-speed railway; fatigue crack;

    机译:弥漫超声波;结构健康监测;高速铁路;疲劳裂缝;

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