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An application of impediography to the high sensitivity and high resolution identification of structural damage

机译:阻抗学在结构损伤高灵敏度高分辨率识别中的应用

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In this study we explore the use of impediographic techniques to perform damage detection in plate-like metal structures. Impediography relies on the piezo-resistive coupling of the host structure to reconstruct high sensitivity and high resolution maps of the internal electrical conductivity. By exploiting localized strain perturbations generated via focused acoustic waves, the piezo-resistive coupling allows extracting a set of linearly independent boundary voltage data that drastically reduces the ill-conditioning of the inverse problem, therefore increasing the performance. The localized perturbation is achieved by leveraging the concept of frequency selective structure (FSS), that is a dynamically tailored structural element enabling the required acoustic focusing via vibration localization. Based on the FSS approach, the impediographic technique is numerically tested to investigate the performance of the combined approach for structural damage detection. The effects of practical implementation issues, such as limited perturbations and limited boundary data, are also explored.
机译:在这项研究中,我们探索使用阻抗技术在板状金属结构中执行损坏检测。阻抗学依靠主体结构的压阻耦合来重建内部电导率的高灵敏度和高分辨率图。通过利用通过聚焦声波产生的局部应变摄动,压阻耦合允许提取一组线性独立的边界电压数据,从而极大地减少了反问题的不适,从而提高了性能。局部扰动是通过利用频率选择结构(FSS)的概念来实现的,该结构是动态定制的结构元素,可通过振动局部化实现所需的声聚焦。基于FSS方法,对阻抗技术进行了数值测试,以研究组合方法在结构损伤检测中的性能。还探讨了实际实施问题的影响,例如有限的摄动和有限的边界数据。

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