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Damage imaging using non-contact air-coupled transducer/laser Doppler vibrometer system

机译:使用非接触式空气耦合传感器/激光多普勒振动计系统进行损伤成像

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摘要

In this work, a rapid imaging technique is proposed for imaging damage in metallic plates using a zero-lag cross-correlation imaging condition in the frequency domain. A fully non-contact, single-side access, hybrid inspection system employing air-coupled transducer (ACT) for the generation of anti-symmetric Lamb wave mode and laser Doppler vibrometer (LDV) for dynamic visualization of the Lamb wavefield is used to experimentally verify the proposed technique on three identical aluminum plates with same notch geometry but with various orientations at different locations. The notches (10mmx5mm) are grooved in the aluminum plates using electric discharge machining with a maximum depth of 40% of plate's thickness and with the following orientations 90 degrees, 60 degrees, and 45 degrees with respect to the horizontal axis. A damage image is constructed by cross-correlating the forward and backward propagating wavefields in the aluminum plates which are separated by analyzing the actual laser Doppler vibrometer measured wavefield using a frequency-wavenumber filtering post-processing technique. The experimental results demonstrate a strong capability of guided wave zero-lag cross-correlation imaging condition technique in localizing, sizing, and detecting the orientation of relatively small defects in the isotopic material.
机译:在这项工作中,提出了一种快速成像技术,用于在频域中使用零延迟互相关成像条件对金属板中的损伤进行成像。实验中使用了完全非接触式,单侧访问,混合检查系统,该系统使用空气耦合换能器(ACT)生成反对称的Lamb波模式,并使用激光多普勒振动计(LDV)动态显示Lamb波场。在三个具有相同凹口几何形状但在不同位置具有不同方向的相同铝板上验证所提出的技术。使用放电加工在铝板上开槽(10mmx5mm),最大深度为板厚度的40%,并且以下方向相对于水平轴分别为90度,60度和45度。通过对铝板中的向前和向后传播的波场进行互相关来构造损伤图像,通过使用频率-波数滤波后处理技术分析实际的激光多普勒振动计测得的波场来分离铝板。实验结果证明了导波零滞后互相关成像条件技术在同位素材料中相对较小的缺陷的定位,定尺寸和方向检测方面的强大能力。

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