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Multiphysics Simulation of Low-Amplitude Acoustic Wave Detection by Piezoelectric Wafer Active Sensors Validated by In-Situ AE-Fatigue Experiment

机译:压电晶片有源传感器低振幅声波检测的多物理场仿真通过原位AE疲劳实验验证

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摘要

Piezoelectric wafer active sensors (PWAS) are commonly used for detecting Lamb waves for structural health monitoring application. However, in most applications of active sensing, the signals are of high-amplitude and easy to detect. In this article, we have shown a new avenue of using the PWAS transducer for detecting the low-amplitude fatigue-crack related acoustic emission (AE) signals. Multiphysics finite element (FE) simulations were performed with two PWAS transducers bonded to the structure. Various configurations of the sensors were studied by using the simulations. One PWAS was placed near to the fatigue-crack and the other one was placed at a certain distance from the crack. The simulated AE event was generated at the crack tip. The simulation results showed that both PWAS transducers were capable of sensing the AE signals. To validate the multiphysics simulation results, an in-situ AE-fatigue experiment was performed. Two PWAS transducers were bonded to the thin aerospace test coupon. The fatigue crack was generated in the test coupon which had produced low-amplitude acoustic waves. The low-amplitude fatigue-crack related AE signals were successfully captured by the PWAS transducers. The distance effect on the captured AE signals was also studied. It has been shown that some high-frequency contents of the AE signal have developed as they travel away from the crack.
机译:压电晶片有源传感器(PWAS)通常用于检测Lamb波,以进行结构健康监测。但是,在主动感应的大多数应用中,信号具有高振幅且易于检测。在本文中,我们展示了使用PWAS换能器检测低振幅疲劳裂纹相关声发射(AE)信号的新途径。使用绑定到结构上的两个PWAS换能器进行了多物理场有限元(FE)仿真。通过仿真研究了传感器的各种配置。一个PWAS放置在疲劳裂纹附近,另一个PWAS放置在距裂纹一定距离处。模拟的AE事件在裂纹尖端产生。仿真结果表明,两个PWAS传感器都能够感应AE信号。为了验证多物理场仿真结果,进行了原位AE疲劳实验。将两个PWAS换能器粘合到薄的航空测试试样上。在产生低振幅声波的测试试样中产生了疲劳裂纹。通过PWAS传感器成功捕获了低振幅疲劳裂纹相关的AE信号。还研究了距离对捕获的AE信号的影响。已经表明,当AE信号远离裂纹时,它们会产生一些高频成分。

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