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Multiple piezoceramic transducers (PZT): structure interaction model

机译:多重压电陶瓷传感器(PZT):结构交互模型

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摘要

Piezoceramic (PZT) transducers are extensively used for damage detection in electromechanical impedance (EMI) based structural health monitoring (SHM) of engineering systems. In the EMI methods, the PZT transducers are generally surface bonded or embedded inside the host structure, and then subjected to actuation so as to interrogate the structure for the desired frequency range. The interrogation results in the prediction of electro-mechanical admittance signatures. These signatures serve as indicator of the health/integrity of the structure. The existing PZT-structure interaction models consider the PZT transducer to be negligible in mass and thus ignored it. However, for multiple PZT-structure interaction, influence of the PZT mass becomes significant as there is significant increase in the number of PZT transducers. This paper presents a novel semi-analytical multiple PZT-structure interaction model which considers the mass influence of the multiple PZT transducers. The model involves numerical modelling, modal analysis and analytical formulation of admittance signature, and thus, is semi-analytical in nature. The numerical analysis serves to obtain the structure response for use as input to the analytical equations, so as to finally predict the admittance signature. The transducers and their host structure without restricting the PZT transducers to square shaped and electrically isotropic ones. Hence, it is expected to be applicable for the non destructive evaluation (NDE) of most engineering systems. The derived model is then experimentally verified using lab sized aluminium plate.
机译:压电陶瓷(PZT)换能器广泛用于工程系统基于机电阻抗(EMI)的结构健康监测(SHM)的损伤检测。在EMI方法中,PZT换能器通常表面粘合或嵌入宿主结构内,然后进行致动,以便询问所需频率范围的结构。询问导致预测机电导纳签证。这些签名作为结构的健康/完整性指标。现有的PZT结构相互作用模型考虑PZT换能器的质量可以忽略不计,因此忽略了它。然而,对于多种PZT结构相互作用,PZT质量的影响变得显着,因为PZT换能器的数量显着增加。本文提出了一种新型半分析多种PZT结构相互作用,其考虑了多个PZT换能器的质量影响。该模型涉及进入签名的数值模拟,模态分析和分析制剂,因此是半分析的。数值分析用于获得用作分析方程的输入的结构响应,从而最终预测导纳签名。换能器及其宿主结构而不限制PZT换能器以方形和电激散型。因此,预计适用于大多数工程系统的非破坏性评估(NDE)。然后使用实验室大小的铝板进行实验验证衍生模型。

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