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Electromechanical impedance instrumented circular piezoelectric-metal transducer for corrosion monitoring: modeling and validation

机译:用于腐蚀监测的机电阻抗仪表圆形压电金属换能器:建模和验证

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摘要

Corrosion induced thickness loss of metallic structures is one of the most common issues across multiple industries. In our previous work, a new type of corrosion sensor based on lead zirconate titanate (PZT) using electromechanical impedance (EMI) technique was proposed. The sensor is fabricated by bonding a PZT patch onto a metal plate. The previous work has demonstrated that the peak frequencies in the conductance signatures decrease linearly with the increase of the corrosion induced thickness loss. However, a theoretical model that fully describe the coupled vibration between piezoelectric element and the metal plate, and the EMI characteristics has not been established. This paper presents the theoretical modeling of the EMI instrumented circular piezoelectric-metal transducer for corrosion monitoring purpose. Based on electro-elastic and Kirchhoff plate theory, the EMI responses of the transducer operated in transverse bending modes with free boundary conditions were modeled. Finite element modeling calculations and experimental measurement were conducted to validate the theoretical results with good agreement.
机译:腐蚀感应厚度损失金属结构是多个行业中最常见的问题之一。在我们之前的工作中,提出了一种基于锆钛酸铅(PZT)的新型腐蚀传感器,使用机电阻抗(EMI)技术。通过将PZT贴剂粘合到金属板上来制造传感器。以前的工作表明,电导签名中的峰值频率随着腐蚀诱导的厚度损失的增加而导致线性降低。然而,尚未建立完全描述压电元件和金属板之间的耦合振动的理论模型,以及EMI特性。本文介绍了EMI仪表循环压电金属换能器,用于腐蚀监测目的的理论建模。基于电弹性和Kirchhoff板理论,建模以横向弯曲模式操作的换能器的EMI响应。进行了有限元建模计算和实验测量,以验证良好的一致性结果。

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