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Defect reconstruction by non-destructive testing with laser induced ultrasonic detection

机译:用激光诱导超声波检测无损检测缺陷重建

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摘要

This work envisages a detailed study of two-dimensional defect localization and reconstruction, using laser generated ultrasound and its application as a remotely controlled non-destructive testing method. As an alternative to full ultrasonic or full optical approaches, we propose a hybrid configuration where ultrasound is generated by impact of laser pulses, while the detection is done with conventional transducers. We implement this approach for defect reconstruction in metallic elements and show that it combines advantages of both photonic and ultrasonic devices, reducing the drawbacks of both methods. We combine our experimental results with a high-resolution signal processing procedure based on the synthetic aperture focusing technique for the benefit of the final two-dimensional visualization of the defects.
机译:这项工作设想了使用激光产生的超声波及其应用作为远程控制的非破坏性测试方法的二维缺陷定位和重建的详细研究。 作为完全超声波或全光学方法的替代方案,我们提出了一种混合配置,其中通过激光脉冲的撞击产生超声波,而通过传统的换能器进行检测。 我们在金属元素中实施了这种方法,并表明它结合了光子和超声装置的优点,从而降低了两种方法的缺点。 我们将实验结果与基于合成孔径聚焦技术的高分辨率信号处理程序相结合,以利于缺陷的最终二维可视化的益处。

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