[1] |
YANG X H, TANG X D, XUE M Q. Effect of laser shock on residual stress of diesel engine crankshaft chamfer[J]. Laser Technology, 2010, 34(5):596-599(in Chinese). |
[2] |
LI Y H. Laser shock processing theory and technology[M]. Beijing:Science Press, 2013:11-16(in Chinese). |
[3] |
BRAISTED W, BROCKMAN R. Finite element simulation of laser shock peening[J]. International Journal of Fatigue, 1999, 21(7):719-724. doi: 10.1016/S0142-1123(99)00035-3 |
[4] |
NAM T. Finite analysis of residual stress field induced by laser shock peening[D]. Columbus, USA: The Ohio State University, 2002: 54-76. |
[5] |
HU Y, YAO Z, HU J. 3-D FEM simulation of laser shock processing[J]. Surface and Coatings Technology, 2006, 201(3):1426-1435. |
[6] |
BHAMARE S, RAMAKRISHNAN G, MANNAVA S R, et al. Simulation-based optimization of laser shock peening process for improved bending fatigue life of Ti-6Al-2Sn-4Zr-2Mo alloy[J]. Surface and Coatings Technology, 2013, 232(232):464-474. |
[7] |
ACHINTHA M, NOWELL D. Eigenstrain modelling of residual stresses generated by laser shock peening[J]. Journal of Materials Processing Technology, 2011, 211(6):1091-1101. doi: 10.1016/j.jmatprotec.2011.01.011 |
[8] |
JIANG Y F, DING B, CHENG Zh J, et al. Effect of laser peening area on residual stress field in small-hole specimens[J]. Laser Technology, 2014, 38(2):201-204(in Chinese). |
[9] |
SHEN L D, CHEN J F, LI X Ch, et al. Finite element analysis on residual stress field for laser shock processing AM50 magnesium alloy[J]. Laser Technology, 2012, 36(1):45-49(in Chinese). |
[10] |
PEYRE P, FABBRO R, MERRIEN P, et al. Laser shock processing of aluminum alloys. Application to high cycle fatigue behavior[J]. Materials Science and Engineering, 1996, A210(1/2):102-113. |
[11] |
WEI X L, LING X. Numerical modeling of residual stress induced by laser shock processing[J]. Applied Surface Science, 2014, 301(20):557-563. |
[12] |
BALLARD P. Residual stresses induced by rapid impact-applications of laser shocking[D]. Palaiseau, France: Ecole Polytechnique, 1991: 20-56. |
[13] |
ZHANG W, YAO Y L, NOYAN I C. Microscale laser shock peening of thin films, part 1:experiment, modeling and simulation[J]. Journal of Manufacturing Science and Engineering, 2004, 126(1):10-17. doi: 10.1115/1.1645878 |
[14] |
KHAN A S, SUH Y S, KAZMI R. Quasi-static and dynamic loading responses and constitutive modeling of titanium alloys[J]. International Journal of Plasticity, 2004, 20(12):2233-2248. doi: 10.1016/j.ijplas.2003.06.005 |
[15] |
ZERILLI F J. Dislocation mechanics-based constitutive equations[J]. Metallurgical and Materials Transactions, 2004, A35(9):2547-2555. |
[16] |
JIANG Y F, LAI Y L, ZHANG L, et al. Investigation of residual stress hole on a metal surface by laser shock[J]. Chinese Journal of Lasers, 2010, 37(8):2073-2079(in Chinese). doi: 10.3788/CJL |