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Lamb wave Structural Health Monitoring Using a Hybrid PZT-Laser Vibrometer Approach

机译:使用混合PZT激光振动计方法对Lamb波结构健康进行监测

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Lamb waves are dispersive and multi-modal, which makes the interpretation of Lamb wave signals very difficult in either the time or frequency domain. In the this article, we present our studies on Lamb wave propagation characterization and crack detection using a hybrid lead zirconate titanate (PZT)-laser vibrometer system and frequency-wave number analysis. A scanning laser Doppler vibrometer is used to acquiring high-resolution time-space Lamb wavefield excited by a PZT actuator. The recorded wavefield is then transformed to frequency-wave number domain by two-dimensional Fourier transform. Wave spectrum in the frequency-wave number domain shows clear distinction among Lamb wave modes being present. These concepts are illustrated through several experimental tests. However, the space information is lost during this transformation. A short-space two-dimensional Fourier transform is then adopted to obtain the frequency-wave number spectra at various spatial locations, resulting in the space-frequency-wave number representation, which can show how the frequency-wave number component varies with respect to space dimension. It provides a means to study the wave propagation from the perspective of wave number domain. The space-frequency-wave number analysis has successfully been used for the study of wave interaction with structural discontinuity and crack detection on an aluminum plate.
机译:兰姆波是色散的和多模态的,这使得兰姆波信号的时域或频域解释都非常困难。在本文中,我们介绍了使用混合锆钛酸铅(PZT)-激光振动计系统和频率-波数分析的Lamb波传播特性和裂纹检测的研究。扫描激光多普勒振动计用于获取由PZT执行器激发的高分辨率时空Lamb波场。然后通过二维傅立叶变换将记录的波场变换到频率-波数域。频率-波数域中的频谱在存在的兰姆波模式之间显示出明显的区别。通过几个实验测试说明了这些概念。但是,空间信息在此转换过程中会丢失。然后采用短空间二维傅立叶变换获得不同空间位置处的频率波数谱,得到空间频率波数表示,可以表示频率波数分量相对于频率的变化情况。空间尺寸。它提供了一种从波数域的角度研究波传播的方法。空频波数分析已成功用于研究铝板上结构不连续性和裂纹检测的波相互作用。

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