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Damage severity and propagation characterization with admittance signatures of piezo transducers

机译:压电换能器的导纳签名的损伤严重程度和传播特性

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摘要

The electromechanical (EM) impedance method is emerging as an effective tool for structural damage detection. Damage is detected by changes in the EM impedance signatures of the smart piezoelectric transducer bonded on the structure. The damage quantification has so far been restricted to using non-parametric statistical indices to measure changes in the signatures. Such measures, although simplistic, fail to correlate the changes in the signatures to physical parameters of the structures. Thus, although effective in detecting the presence of damage, the method fails to give further information about the location and severity of the damage. In this paper, the EM impedance method integrated with a finite element (FE) model is presented as a means for characterizing damage growth. Damage growth is characterized by quantifying the changes in the natural frequency shifts of the structure extracted from the EM admittance signatures. A new damage characterization index is derived, which is experimentally validated to be capable of distinguishing a localized increase in severity from damage propagation through the structure.
机译:机电(EM)阻抗方法正在成为一种有效的结构损伤检测工具。通过粘结在结构上的智能压电传感器的EM阻抗特征的变化来检测损坏。迄今为止,损害量化仅限于使用非参数统计指标来衡量特征的变化。这样的措施尽管简单,却不能使特征的变化与结构的物理参数相关联。因此,尽管该方法在检测损坏的存在方面是有效的,但是不能提供有关损坏的位置和严重程度的进一步信息。在本文中,EM阻抗方法与有限元(FE)模型集成在一起,作为表征损伤增长的一种方法。通过量化从EM导纳签名中提取的结构的固有频率偏移的变化来表征损伤的增长。导出了新的损伤特征指标,该指标已通过实验验证,能够区分局部严重程度与通过结构传播的损伤。

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