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Two-dimensional modeling of the effects of external vibration on the PZT impedance signature

机译:外部振动对PZT阻抗签名的影响的二维建模

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The electromechanical impedance (EMI) technique using piezoelectric ceramic lead zirconate titanate (PZT) transducers has been increasingly applied to structural health monitoring (SHM) of aerospace, civil and mechanical structures. The PZT transducers are usually surface bonded to or embedded in a structure and subjected to actuation so as to interrogate the structure at the desired frequency range. The interrogation results in electromechanical admittance (inverse of EMI) signatures which can be used to estimate the structural health or integrity according to the changes of the signatures. In the existing EMI method, the vibration of the structure caused by the external excitations has been considered only for the one-dimensional scenario. This paper develops a two-dimensional EMI model to account for the effect of external excitation on the PZT admittance signature. An application is illustrated with modeling of a cantilevered Kirchhoff plate interrogated by a single surface-bonded PZT transducer. Experiments and numerical simulations are also carried out to verify the theoretical model. Finally, the effects of external excitation on PZT impedance signatures are discussed.
机译:使用压电陶瓷锆钛酸铅(PZT)换能器的机电阻抗(EMI)技术已越来越多地应用于航空,民用和机械结构的结构健康监测(SHM)。通常将PZT换能器表面结合至或嵌入结构中并进行致动,以便在期望的频率范围内询问结构。该询问导致机电导纳(EMI倒数)签名,该签名可用于根据签名的变化来估计结构的健康或完整性。在现有的EMI方法中,仅针对一维情况考虑了由外部激励引起的结构的振动。本文建立了二维EMI模型,以说明外部激励对PZT导纳签名的影响。通过对单个表面结合的PZT换能器询问的悬臂Kirchhoff板进行建模来说明一个应用。还进行了实验和数值模拟以验证理论模型。最后,讨论了外部激励对PZT阻抗签名的影响。

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