Numerical Study for Surface-breaking Crack Detection on a Cylinder Using Laser-generated Ultrasound

Xuekun Liu, Shixi Yang, Yong-qiang Liu
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引用次数: 2

Abstract

Laser ultrasonic has been widely investigated for its high spatial resolution, non-contact generation and distant testing. In this study, the laser induced waves on a cylinder is simulated based on an explicit finite element model, and the location of the surface-breaking crack is determined using signal enhancement of surface waves on the cylinder. A feature is extracted based on wavelet packet transform and singularity value decomposition (WPT-SVD) to gauge the depth of surface-breaking crack. The simulation results show that the feature is sensitive to the surface-breaking crack, with an accurate location determined by an enhancement of surface waves when the crack is close to the laser source. This study provides a potential application for testing surface-breaking cracks on the rotating cylindrical component.
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激光超声检测圆柱体表面破裂裂纹的数值研究
激光超声以其高空间分辨率、非接触产生和远距离检测等优点得到了广泛的研究。本研究基于显式有限元模型对圆柱体上的激光诱导波进行了模拟,并利用圆柱体表面波的信号增强来确定表面破裂裂纹的位置。基于小波包变换和奇异值分解(WPT-SVD)提取特征来测量地表破裂裂纹深度。仿真结果表明,该特征对表面破裂裂纹非常敏感,当裂纹靠近激光源时,通过表面波的增强可以确定裂纹的精确位置。本研究为旋转圆柱构件表面断裂裂纹的检测提供了潜在的应用前景。
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