• Laser & Optoelectronics Progress
  • Vol. 47, Issue 10, 101401 (2010)
Gu Jianqiang1、2、3、*, Luo Fang1、2、3, and Yao Jianhua1、2、3
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: 10.3788/lop47.101401 Cite this Article Set citation alerts
    Gu Jianqiang, Luo Fang, Yao Jianhua. Numerical Simulation of Residual Stress during Laser Cladding[J]. Laser & Optoelectronics Progress, 2010, 47(10): 101401 Copy Citation Text show less
    References

    [1] Hao Nanhai, Lu Wei, Zuo Tiechuan. Thermal-mechanical coupling finite element analysis of stress field in laser cladding process[J]. Chinese Surface Engineering, 2005, 18(1): 20~23

    [2] Lai Peng. Numerical simulation of laser cladding process[D]. Guangzhou: South China Normal University, 2009

    [3] Shen Xianfeng, Wang Yang, Yao Jing et al.. Finite element simulation of thermal stress distribution in direct metal laser sintering[J]. Laser Technology, 2005, 29(4): 343~346

    [4] Li Shouwei, Shen Yifu, Gu Dongdong et al.. Thermal~mechanical coupling finite element analysis of stress field in selective laser sintering of multi~component metal powder[J]. Chinese Mechanical Engineering Society, 2007, 18(6): 751~755

    [5] M. Labudovic, D. Hu, R. Kovacevic. A three dimensional model for direct laser metal powder deposition and rapid prototyping[J]. J. Materials Science, 2003, 38(1): 35~49

    [6] Cheng Guangping, Li Mingxi, He Yizhu et al.. Numerical simulation of temperature field and stress field in laser clad coating[J]. Heat Treatment, 2009, 24(4): 49~53

    [7] Yao Guofeng, Chen Guangnan. Numerical simulation of transient thermal field and residual stress in laser melting process[J]. Applied Laser, 2002, 22(2): 241~243

    [8] Zhan Huanxiao, Wang Yong, Han Tao et al.. Residual stress analysis of the remelting zone on 42CrMo steel plate in single-pass laser wide-band treatment[J]. Chinese J. Lasers, 2008, 35(4): 625~630

    [9] Chen Ruifang, Guo Naiguo, Hua Yinqun. Numerical simulation of effects of laser shock parameters on residual stress field induced by laser shock processing[J]. Chinese J. Lasers, 2008, 35(6): 931~936

    [10] Yu Shurong, Fan Ding, Xiong Jinhui et al.. CO2 laser welding of tailored aluminum alloy sheets with different thickness and numerical simulation[J]. Chinese J. Lasers, 2008, 35(11): 1795~1800

    [11] Li Shaojie, Fan Xingjuan, Yao Xiaoliang et al.. Numerical simulation of temperature field during superalloy laser cladding[J]. Hot Working Technology, 2007, 36(19): 76~79

    [12] F. Bruckner, D. Lepski, E. Beyer. Modeling the influence of process parameters and additional heat sources on residual stresses in laser cladding[J]. Journal of Thermal Spray Technology, 2007, 16(3): 355~373

    [13] Yan Dongyang, Wu Aiping, Jiao Haojun et al.. Numerical simulation of residual stress and deformation on laser welding of "grooved-coat" structure[J]. Transactions of the China Welding Institution, 2008, 29(11): 13~16

    [14] Wang Yeping, Zhu Chengming. Finite element simulation of temperature field and stress field in laser forming[J]. Mechanical Engineering and Automation, 2007, (1): 22~24

    CLP Journals

    [1] Wang Kai, Zhao Jianfeng, Pan Hu, Liu Yunlei. Influence of Repair Cross Section on Stress-Field Distribution in the Nickel-Based Superalloy Laser Remanufacturing[J]. Laser & Optoelectronics Progress, 2013, 50(4): 41402

    Gu Jianqiang, Luo Fang, Yao Jianhua. Numerical Simulation of Residual Stress during Laser Cladding[J]. Laser & Optoelectronics Progress, 2010, 47(10): 101401
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