APPLIED LASER, Volume. 43, Issue 8, 139(2023)
Quantitative Study of Reflection Component of Surface Acoustic Waveon Crack Depth of Metal Surface
[8] [8] ZENG W, YAO Y, QI S K, et al. Finite element simulation of laser-generated surface acoustic wave for identification of subsurface defects[J]. Optik, 2020, 207: 163812.
[15] [15] COOPER J A, CROSBIE R A, DEWHURST R J, et al. Surface acoustic wave interactions with cracks and slots: A noncontacting study using lasers[J]. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 1986, 33(5): 462-470.
[16] [16] KASAI M, FUKUSHIMA S, GOHSHI Y, et al. A basic analysis of pulsed photoacoustic signals using the finite elements method[J]. Journal of Applied Physics, 1988, 64(3): 972-976.
[17] [17] GUAN J F. Numerical study on signal enhancement of the Rayleigh wave in the near-field of surface defects[J]. Japanese Journal of Applied Physics, 2010, 49(6R): 062502.
[18] [18] GUAN J F, SHEN Z H, NI X W, et al. Numerical simulation of the reflected acoustic wave components in the near field of surface defects[J]. Journal of Physics D: Applied Physics, 2006, 39(6): 1237-1243.
[19] [19] GUAN J F. Numerical study on depth gauging of surface breaking defects using laser-generated surface acoustic waves[J]. Japanese Journal of Applied Physics, 2011, 50(3R): 032703.
[20] [20] SHI Y F, SHEN Z H, NI X W, et al. Finite element modeling of acoustic field induced by laser line source near surface defect[J]. Optics Express, 2007, 15(9): 5512.
[21] [21] GUAN J F, SHEN Z H, LU J A, et al. Finite element analysis of the scanning laser line source technique[J]. Japanese Journal of Applied Physics, 2006, 45(6A): 5046-5050.
[22] [22] ZHOU Z G, ZHANG K S, ZHOU J H, et al. Application of laser ultrasonic technique for non-contact detection of structural surface-breaking cracks[J]. Optics & Laser Technology, 2015, 73: 173-178.
[23] [23] SOLTANI P, AKBAREIAN N. Finite element simulation of laser generated ultrasound waves in aluminum plates[J]. Latin American Journal of Solids and Structures, 2014, 11(10): 1761-1776.
[26] [26] ZENG W, YAO F Y. Numerical simulation of laser-generated ultrasonic waves for identification of branched-breaking defects[J]. Optik, 2020, 208: 164435.
[29] [29] LIU P P, NAZIRAH A W, SOHN H. Numerical simulation of damage detection using laser-generated ultrasound[J]. Ultrasonics, 2016, 69: 248-258.
[30] [30] ZHANG J P, QIN X P, YUAN J X, et al. The extraction method of laser ultrasonic defect signal based on EEMD[J]. Optics Communications, 2021, 484: 126570.
Get Citation
Copy Citation Text
Lu Siye, Zhang Xingyuan, Jin Zhenyue. Quantitative Study of Reflection Component of Surface Acoustic Waveon Crack Depth of Metal Surface[J]. APPLIED LASER, 2023, 43(8): 139
Received: May. 10, 2022
Accepted: --
Published Online: May. 24, 2024
The Author Email: