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Adapting the full matrix capture and the total focusing method to laser ultrasonics for remote non destructive testing

机译:适应全矩阵捕获和激光超声波的总关注方法,用于远程非破坏性测试

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摘要

Laser Induced Phased Arrays (LIPAs) use post processing to focus and steer the laser generated and detected ultrasonic beam, synthesizing a phased array. The technique is broadband, non-contact, and couplant free, making LIPAs suitable for large stand-off distances, inspection of components of complex geometries and hazardous environments. This paper presents LIPAs synthesized by capturing the Full Matrix (FMC), at the nondestructive, thermoelastic regime. The Total Focusing Method (TFM) is used as the imaging algorithm, where the captured signals are summed with the appropriate time delay, in order to synthesize a focus at every point in the imaging area. The FMC and the TFM, are adapted to the needs of LIPAs in order to enable fast imaging and make more efficient use of the information in the data. Experimental results are presented from nondestructive, laser ultrasonic inspection of an aluminum sample with side drilled holes at depths varying between 10 and 20 mm from the surface.
机译:激光诱导相控阵列(Lipas)使用后处理聚焦并转向激光产生和检测的超声波束,合成相位阵列。该技术是宽带,非接触和可自由的,使Lipas适用于大型脱扣距离,检查复杂几何和危险环境的组件。本文通过捕获非破坏性的热弹性方案来介绍通过捕获全矩阵(FMC)合成的LIPAS。总对焦方法(TFM)用作成像算法,其中捕获的信号以适当的时间延迟求和,以便在成像区域中的每个点合成聚焦。 FMC和TFM,适用于LIPA的需求,以便能够快速成像并更有效地利用数据中的信息。实验结果由非破坏性的激光超声检查铝样品的铝样品,深度在距离表面的深度为10和20mm之间。

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