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Pulsed laser-scanning laser Doppler vibrometer (PL-SLDV) phased arrays for damage detection in aluminum plates

机译:脉冲激光扫描激光多普勒振动计(PL-SLDV)相控阵用于铝板中的损伤检测

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Lamb wave phased arrays employ sensors placed close to each other in compact distributions and can quickly inspect large plate-like structures through time (or phase) delays in the way analogous to radar. Traditional Lamb wave phased arrays usually adopt large-size ultrasonic transducers bonded on (or placed close to the surface of) a structure, and hence they limit the array configurability and cannot perform inspection from a far distance to the structure. This paper presents Lamb wave phased arrays implemented with a fully noncontact pulsed laser - scanning laser Doppler vibrometer (PL-SLDV) system, which employs a PL for exciting Lamb waves at a single PL spot through the thermoelastic effect and an SLDV for acquiring signals of Lamb waves at multiple scanning points based on the Doppler effect, respectively. The fully noncontact PL-SLDV phased arrays enable inspection from a far distance, as well as easily constructible receiver phased arrays in various configurations due to the use of high-resolution scanning laser. To generate inspection images with the acquired signals of Lamb waves, an improved delay-and-sum (DAS) imaging algorithm for receiver phased arrays is developed, where the exact Lamb wave frequency-wavenumber dispersion relation is considered for both the phase delay and back-propagation phase. This improved DAS imaging algorithm addresses the dispersion effect and results in higher radial imaging resolution, compared to the conventional DAS imaging algorithm. In addition, adaptive weighting factors are implemented to improve the angular imaging resolution. Proof-of-concept experiments demonstrate that multiple simulated defects of different sizes as well as broadside and offside simulated cracks can be successfully detected using a PL-SLDV phased array with a high-dispersion A(0) mode. The experimental study also shows that the improved DAS imaging algorithm can achieve high radial and angular imaging resolution. (C) 2018 Elsevier Ltd. All rights reserved.
机译:兰姆波相控阵采用紧密分布的彼此靠近的传感器,可以通过类似于雷达的方式通过时间(或相位)延迟快速检查大型板状结构。传统的兰姆波相控阵通常采用结合在结构上(或放置在结构表面附近)的大型超声换能器,因此它们限制了阵列的可配置性,并且无法从远处到结构进行检查。本文介绍了用完全非接触脉冲激光-扫描激光多普勒振动计(PL-SLDV)系统实现的Lamb波相控阵列,该系统利用PL通过热弹性效应在一个PL点激发Lamb波,并利用SLDV来捕获信号。分别基于多普勒效应的多个扫描点处的兰姆波。完全非接触式PL-SLDV相控阵可以实现远距离检查,并且由于使用了高分辨率的扫描激光器,因此可以轻松构造各种配置的接收器相控阵。为了用获取的兰姆波信号生成检查图像,开发了一种针对接收器相控阵的改进的延迟和(DAS)成像算法,其中考虑了相位延迟和反向波的精确兰姆波频率-波数色散关系-传播阶段。与传统的DAS成像算法相比,这种改进的DAS成像算法解决了色散效应并导致更高的径向成像分辨率。另外,实现自适应加权因子以改善角度成像分辨率。概念验证实验表明,使用具有高分散A(0)模式的PL-SLDV相控阵列可以成功检测到多个大小不同的模拟缺陷以及宽边和越边模拟裂纹。实验研究还表明,改进的DAS成像算法可以实现较高的径向和角度成像分辨率。 (C)2018 Elsevier Ltd.保留所有权利。

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