Continuous wavelet transform application in diagnostics of piezoelectric wafer active sensors

M. Golub, A. Shpak, I. Buethe, C. Fritzen, H. Jung, J. Moll
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引用次数: 5

Abstract

Piezoelectric wafer active sensors (PWAS) are employed in a variety of structural health monitoring (SHM) applications. Failure of these might lead to significant problems, so monitoring of actuators themselves is necessary. While totally debonded PWAS can be detected easily, small debondings could still occur. In that case PWAS is still capable of generating ultrasound waves, but might lead to false diagnostic results since the underlying baseline measurements are not valid anymore. Therefore an experimental setup with a specimen of 16 partially debonded actuators has been used. Phenomena accompanying wave excitation by debonded actuators are examined. Collected knowledge is analyzed in order to identify existence, location and shape of a debonded part of the actuator. For a sufficiently debonded PWAS some interesting abnormalities have been detected for high frequencies. Wavelet analysis has revealed that the velocities of the motion and carrier frequencies depend on the shape of the debonded part of the PWAS.
连续小波变换在压电片有源传感器诊断中的应用
压电片有源传感器(PWAS)应用于各种结构健康监测(SHM)中。这些故障可能会导致严重的问题,因此对执行器本身的监测是必要的。虽然可以很容易地检测到完全脱粘的PWAS,但仍然可能发生小的脱粘。在这种情况下,PWAS仍然能够产生超声波,但可能导致错误的诊断结果,因为基础基线测量不再有效。因此,实验装置与16个部分脱粘驱动器的标本已被使用。研究了脱粘作动器激发波的现象。对收集到的知识进行分析,以确定执行机构脱粘部分的存在、位置和形状。对于充分脱粘的PWAS,在高频处发现了一些有趣的异常。小波分析表明,运动速度和载波频率取决于PWAS剥离部分的形状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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