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Non-axisymmetric Lamb wave excitation by piezoelectric wafer active sensors

机译:压电晶片有源传感器的非轴对称Lamb波激发

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摘要

A Lamb wave-based structural health monitoring system requires the exact knowledge of the dynamical behavior of piezoelectric actuators. Since piezoelectric wafer active sensors (PWASs) with a disk-wrapped electrode are used in many practical applications, a detailed description of the radiation field is essential to enhance the damage detection sensitivity. It has been shown in the literature that the radiation pattern is often directional and frequency-dependent. While a uniform radiation occurs at low excitation frequencies of several tens of kilohertz, the radiation pattern becomes strongly non-axisymmetric when the excitation frequency increases. The theoretical considerations and experimental studies in this paper show that this effect can be attributed to the influence of the complex actuator shape with disk-wrapped electrode. Therefore, simulation procedures based on an integral approach and a pin-force model are compared with experimental measurements with a laser-Doppler vibrometer (LDV).
机译:基于Lamb波的结构健康监测系统需要对压电执行器的动力学行为有确切的了解。由于带有盘绕电极的压电晶片有源传感器(PWAS)已用于许多实际应用,因此辐射场的详细描述对于提高损伤检测的灵敏度至关重要。在文献中已经表明,辐射方向图通常是方向性的并且与频率有关。虽然在几十千赫兹的低激发频率下会出现均匀的辐射,但是当激发频率增加时,辐射图会变得非常不轴对称。本文的理论考虑和实验研究表明,这种影响可归因于盘片包裹电极的复杂致动器形状的影响。因此,将基于积分方法和销钉力模型的仿真程序与使用激光多普勒振动计(LDV)进行的实验测量进行了比较。

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