Chinese Journal of Lasers, Volume. 43, Issue 10, 1002003(2016)
Effect of Temperature on Surface Mechanical Property of 2024 Aluminum Alloy Treated by Laser Peening
[1] [1] H-Gangaraj S M, Alvandi-Tabrizi Y, Farrahi G H, et al. Finite element analysis of shot-peening effect on fretting fatigue parameters[J]. Tribology International, 2011, 44(11): 1583-1588.
[2] [2] Shi M Q, Takayama Y, Ma C A, et al. Microstructure and texture evolution in titanium subjected to friction roll surface processing and subsequent annealing[J]. Transactions of Nonferrous Metals Society of China, 2012, 22(11): 2616-2627.
[3] [3] Zhou Jianzhong, Zuo Lidang, Huang Shu, et al. Analysis on mechanical property of 6061-T6 aluminum alloy by laser shot peening based on strain rate[J]. Chinese J Lasers, 2012, 39(5): 0503003.
[4] [4] Huang S, Zhou J Z, Sheng J, et al. Effects of laser peening with different coverage areas on fatigue crack growth properties of 6061-T6 aluminum alloy[J]. International Journal of Fatigue, 2013, 47: 292-299.
[5] [5] Juijerm P, Altenberger I, Scholtes B. Fatigue and residual stress relaxation of deep rolled differently aged aluminum alloy AA6110[J]. Materials Science and Engineering A, 2006, 426(1): 4-10.
[6] [6] Wick A, Schulze V, Vhringer O. Effects of warm peening on fatigue life and relaxation behavior of residual stresses in AISI 4140 steel[J]. Materials Science and Engineering A, 2000, 293(1): 191-197.
[7] [7] Harada Y, Mori K. Effect of processing temperature on warm shot peening of spring steel[J]. Journal of Materials Processing Technology, 2005, 162: 498-503.
[8] [8] Ye C, Suslov S, Kim B J, et al. Fatigue performance improvement in AISI 4140 steel by dynamic strain aging and dynamic precipitation during warm laser shock peening[J]. Acta Materialia, 2011, 59(3): 1014-1025.
[9] [9] Ye C, Liao Y L, Suslov S, et al. Ultrahigh dense and gradient nano-precipitates generated by warm laser shock peening for combination of high strength and ductility[J]. Materials Science and Engineering A, 2014, 609: 195-203.
[10] [10] Zhou J Z, Meng X K, Huang S, et al. Effects of warm laser peening at elevated temperature on the low-cycle Cross Mark fatigue behavior of Ti6Al4V alloy[J]. Materials Science and Engineering A, 2015, 643: 86-95.
[11] [11] Montross C S, Brandt M, Swain M V. Self-limiting hardness changes in laser peened 6061-T6 aluminium[J]. Surface Engineering, 2001, 17(6): 477-482.
[12] [12] Liao Y L, Ye C, Kim B J, et al. Nucleation of highly dense nanoscale precipitates based on warm laser shock peening[J]. Journal of Applied Physics, 2010, 108(6): 063518.
[13] [13] Dorman M, Toparli M B, Smyth N, et al. Effect of laser shock peening on residual stress and fatigue life of clad 2024 aluminium sheet containing scribe defects[J]. Materials Science and Engineering A, 2012, 548: 142-151.
[15] [15] Hull D, Bacon D J. Introduction to dislocations[M]. Ding Shushen, Li Qi, Transl. Beijing: Science Press, 1990: 199-204.
[16] [16] Zhou Jianzhong, Han Yuhang, Huang Shu, et al. Effect of different process temperatures on residual stress and nano-hardness of warm laser peened INl718 superalloy[J]. Chinese J Lasers, 2015, 42(7): 0703001.
[17] [17] Yin Meijie, Chen Jianghua, Liu Chunhui. Effect of interrupted ageing on mechanical property and microstructure of AA2024 alloy[J]. The Chinese Journal of Nonferrous Metals, 2015, 25(12): 3271-3281.
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Meng Xiankai, Zhou Jianzhong, Su Chun, Huang Shu, Sheng Jie, Chen Hansong, Xu Jiale. Effect of Temperature on Surface Mechanical Property of 2024 Aluminum Alloy Treated by Laser Peening[J]. Chinese Journal of Lasers, 2016, 43(10): 1002003
Category: laser manufacturing
Received: May. 28, 2016
Accepted: --
Published Online: Oct. 12, 2016
The Author Email: Xiankai Meng (mengdetiankong10@126.com)