Reference-free Crack Detection and Localization by Nonlinear Laser Ultrasonic

Yong-qiang Liu, Shixi Yang, Xuekun Liu
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Abstract

This paper presents a study on non-destructive crack detection and localization by nonlinear laser ultrasonic and state-space-based method, without using any reference data from the undamaged structure. After irradiated by laser pulse, ultrasonic waves will be generated and propagate in a structure. The corresponding waves are recorded by a transducer placed at a fixed point on the structure. State space based attractors are reconstructed based on the recorded data, and a nonlinear crack-sensitive metric called average local attractor variance ratio (ALAVR) is extracted to detect the differences between adj acent attractors, hence the crack. Furthermore, laser scanning technique is proposed to locate the crack on the structure. The proposed technique has been successfully used for detecting and locating artificial crack in an aluminum plate and an actual sand inclusion crack in a compressor body.
非线性激光超声无参考裂纹检测与定位
本文研究了在不使用任何未损伤结构参考数据的情况下,采用非线性激光超声和基于状态空间的方法进行无损裂纹检测和定位。超声波经激光脉冲照射后,在结构中产生并传播。相应的波由放置在结构上固定点的传感器记录下来。基于记录数据重构基于状态空间的吸引子,并提取一种非线性的局部吸引子平均方差比(ALAVR)来检测不同吸引子之间的差异,从而产生裂纹。在此基础上,提出了激光扫描技术对裂纹进行定位的方法。该方法已成功地用于铝板上的人工裂缝和压气机机体上的实际夹杂砂裂纹的检测和定位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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