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A novel damage index for damage detection and localization of plate-type structures using twist derivatives of laser-measured mode shapes

机译:使用激光测量模式形状的扭转衍生物造成损伤检测和损伤检测和定位的新损伤指数

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摘要

It is important to detect and locate local damage in plate-type structures before such damage develops to a significant degree, jeopardizing the integrity and safety of structures. To address this problem, approaches using derivatives of laser-measured mode shapes have become the research focus during the recent decade. In a physical sense, damage can cause discontinuities in shear strains; conversely, such discontinuities can be reflected in twist derivatives of mode shapes, whereby the presence of the damage can be manifested. To address the susceptibility of twist derivatives to noise interference, this study formulates a new concept of multi-resolution twist derivative by integrating the multi- resolution analysis into twist derivatives, which features higher robustness against noise interference. A novel damage index using multi-resolution twist derivatives is established for detecting and locating damage in plate-type structures. In particular, a strategy of choosing mode shapes and a scheme of sparsely sampling them are proposed. By numerical simulation using the finite element method, the capability of the approach is numerically verified on a plate-type structure with a square notch. The applicability of the method is experimentally validated by detecting and locating a notch on an aluminum plate, whose mode shapes are acquired through non-contact measurement using a scanning laser vibrometer. The numerical and experimental results show that the approach can accurately characterize the presence, location, and size of the damage, and is robust against noise interference, suitable for detecting and locating damage of plate-type structures under noisy conditions. (c) 2020 Elsevier Ltd. All rights reserved.
机译:在这种损伤发展到显着程度,危及结构的完整性和安全性之前,重要的是检测和定位在板式结构中的局部伤害。为了解决这个问题,使用激光测量模式形状的衍生物的方法已成为最近十年的研究重点。在物理意义上,损伤会导致剪切菌株中的不连续性;相反,这种不连续性可以反映在模式形状的扭转衍生物中,从而可以表现出损坏的存在。为了解决扭曲衍生物对噪声干扰的易感性,本研究通过将多分辨率分析集成到扭转衍生物中,制定了多分辨率扭转衍生物的新概念,其具有更高的噪声干扰的鲁棒性。建立使用多分辨率扭转衍生物的新型损伤指数用于检测和定位板式结构损坏。特别地,提出了一种选择模式形状的策略和稀疏地采样它们的方案。通过使用有限元方法的数值模拟,在具有方形凹口的板式结构上进行数字验证该方法的能力。通过在铝板上检测和定位凹口通过在铝板上检测和定位该方法的适用性,其通过使用扫描激光振动计通过非接触式测量获取模式形状。数值和实验结果表明,该方法可以准确地表征损坏的存在,位置和尺寸,并且对噪声干扰具有鲁棒,适用于在嘈杂的条件下检测和定位板式结构的损坏。 (c)2020 elestvier有限公司保留所有权利。

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