Chinese Journal of Lasers, Volume. 38, Issue 6, 603025(2011)
Microstructure of High Manganese Steel by Laser Shock Processing
[1] [1] Yan Weilin, Fang Liang, Zheng Zhanguang. Work hardening of high manganese steel[J]. Foundry Technology, 2008, 29(11): 1468~1472
[2] [2] Petrov Yun, V. G. Gavriljuk, H. Berns et al.. Surface structure of stainless and hadfield steel after impact[J]. Wear, 2006, 260(10): 687~691
[3] [3] M. A. Filippov, B. N. Kodes. Influence of high-pressure shock waves on the fine structure of manganese steel[J]. Phys. Met. Metallogr., 1971, 31(1): 171~175
[4] [4] J. L. Ocana, M. Morales, J. J. Garcia-Ballesteros et al.. Laser shock microforming of thin metal sheets[J]. Appl. Surf. Sci., 2009, 255(10): 5633~5636
[5] [5] Xu Yunhua, Chen Yumei, Xiong Jianlong et al.. Mechanism of strain-induced nanocrystallization of hadfield steel under high energy impact load[J]. Acta Metallrugica Sinica, 2001, 37(2): 165~170
[6] [6] Li Shusuo, Chen Xijie. Work hardening and wearability of superhigh manganese steel[J]. Journal of Iron and Steel Research, 1997, 9(4): 38~41
[11] [11] Zu Fangqiu, Li Xiaoyun, Liu Lanjun et al.. Research on microstructure and work hardening mechanism of high manganese steel by simulating actual working condition[J]. Transactions of Materials and Heat Treatment, 2006, 27(2): 71~74
[13] [13] Y. X. Hu, Z. Q. Yao. Fem simulation of residual stresses induced by laser shock with overlapping laser spots[J]. Acta Metall. Sin., 2008, 21(2): 125~132
[14] [14] N. Fujita, K. Ohmura, A. Yamamoto. Changes of microstructures and high temperature properties during high temperature service of niobium added ferritic stainless steels[J]. Mater. Sci. Engng., 2003, 351(1-2): 272~275
[15] [15] G. M. Sim, J. C. Ahn, S. C. Hong. Effect of Nb precipitate coarsening on the high temperature strength in Nb containing ferritic stainless steels[J]. Mater. Sci. Engng., 2005, 396(1-2): 159~164
[16] [16] J. Z. Lu, K. Y. Luo, Y. K. Zhang et al.. Grain refinement of LY2 aluminum alloy induced by ultra-high plastic strain during mulitiple laser shock processing impacts[J]. Acta Materialia, 2010, 58(11): 3984~3994
[17] [17] Y. X. Hu, Z. Q. Yao. Overlapping rate effect on laser shock processing of 1045 steel by small spots with NdYAG pulsed laser[J]. Surf. Coat. Technol., 2008, 202(8): 1517~1525
[18] [18] A. King, A. Steuwer, C. Woodward et al.. Effects of fatigue and fretting on residual stresses introduced by laser shock peening[J]. Mater. Sci. Engng., 2006, 435-436(5): 12~18
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Zhang Lingfeng, Xiong Yi, Zhang Yi, Liu Yuliang. Microstructure of High Manganese Steel by Laser Shock Processing[J]. Chinese Journal of Lasers, 2011, 38(6): 603025
Category: materials and thin films
Received: Mar. 22, 2011
Accepted: --
Published Online: May. 18, 2011
The Author Email: Lingfeng Zhang (zh_lingfeng@163.com1)