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Baseline-Free Structural Damage Identification for Beam-Like Structures Using Curvature Waveforms of Propagating Flexural Waves

机译:使用曲率波形传播弯曲波的光束结构的基线结构损伤识别

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摘要

Curvatures in mode shapes and operating deflection shapes have been extensively studied for vibration-based structural damage identification in recent decades. Curvatures of mode shapes and operating deflection shapes have proved capable of localizing and manifesting local effects of damage on mode shapes and operating deflection shapes in forms of local anomalies. The damage can be inversely identified in the neighborhoods of the anomalies that exist in the curvatures. Meanwhile, propagating flexural waves have also been extensively studied for structural damage identification and proved to be effective, thanks to their high damage-sensitivity and long range of propagation. In this work, a baseline-free structural damage identification method is developed for beam-like structures using curvature waveforms of propagating flexural waves. A multi-resolution local-regression temporal-spatial curvature damage index (TSCDI) is defined in a pointwise manner. A two-dimensional auxiliary TSCDI and a one-dimensional auxiliary damage index are developed to further assist the identification. Two major advantages of the proposed method are: (1) curvature waveforms of propagating flexural waves have relatively high signal-to-noise ratios due to the use of a multi-resolution central finite difference scheme, so that the local effects of the damage can be manifested, and (2) the proposed method does not require quantitative knowledge of a pristine structure associated with a structure to be examined, such as its material properties, waveforms of propagating flexural waves and boundary conditions. Numerical and experimental investigations of the proposed method are conducted on damaged beam-like structures, and the effectiveness of the proposed method is verified by the results of the investigations.
机译:近几十年来广泛研究了模式形状和操作偏转形状的曲率,以便基于振动的结构损坏识别。模式形状和操作偏转形状的曲率已经证明能够定位和体现局部形状与局部异常形式的损坏的局部影响。在曲率存在于存在的异常的邻域中,损害可以终于识别。同时,由于其高损伤灵敏度和长期传播,因此也被广泛地研究了对结构损伤识别的广泛研究,并证明是有效的。在这项工作中,使用传播弯曲波的曲率波形来开发出基线结构损伤识别方法。多分辨率本地回归时间空间曲率曲率曲曲索引(TSCDI)以点播方式定义。开发了一种二维辅助TSCDI和一维辅助损伤指数以进一步辅助识别。所提出的方法的两个主要优点是:(1)传播弯曲波的曲率波形由于使用多分辨率中央有限差分方案而具有相对高的信噪比,因此损坏的局部效应可以表现出来,并且(2)所述方法不需要与待检查结构相关的原始结构的定量知识,例如其材料特性,传播弯曲波的波形和边界条件。所提出的方法的数值和实验研究在损坏的光束结构上进行,并且通过调查结果验证了所提出的方法的有效性。

著录项

  • 期刊名称 Sensors (Basel Switzerland)
  • 作者

    Y. F. Xu; J. S. Kim;

  • 作者单位
  • 年(卷),期 2021(21),7
  • 年度 2021
  • 页码 2453
  • 总页数 18
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:无基线结构损伤识别;光束结构;曲率波形;无损评估;损伤指数;

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