• Chinese Journal of Lasers
  • Vol. 50, Issue 8, 0802107 (2023)
Xiaomei Liang1, Yicheng Yang1、2、3, Ruisheng Huang1、*, Dexi Tian2, and Xiaoyu Chen1
Author Affiliations
  • 1Harbin Welding Institute Limited Company, Harbin 150028, Heilongjiang China
  • 2Beijing Aerospace Xinfeng Machinery Equipment Limited Company, Beijing 100039, China
  • 3Lab of materials welding and joining, University of Science and Technology Beijing, Beijing 100083, China
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    DOI: 10.3788/CJL220679 Cite this Article Set citation alerts
    Xiaomei Liang, Yicheng Yang, Ruisheng Huang, Dexi Tian, Xiaoyu Chen. Analysis on Characteristics of Weld Formation with 10 kW Level High Power Laser‐Arc Hybrid Welding[J]. Chinese Journal of Lasers, 2023, 50(8): 0802107 Copy Citation Text show less
    References

    [1] Wang W, Lin S Y, Wang X Y et al. Double electric conduction mechanism of Nd∶YAG laser-pulse MAG hybrid welding[J]. Chinese Journal of Lasers, 39, 0203001(2012).

    [2] Bunaziv I, Dørum C, Nielsen S E et al. Laser-arc hybrid welding of 12- and 15-mm thick structural steel[J]. The International Journal of Advanced Manufacturing Technology, 107, 2649-2669(2020).

    [3] Chen C, Shen Y P, Gao M et al. Influence of welding angle on the weld morphology and porosity in laser-arc hybrid welding of AA2219 aluminum alloy[J]. Welding in the World, 64, 37-45(2020).

    [4] Fan D, Dong B Z, Yu S R et al. Technology features and progress of laser-arc hybrid welding[J]. Hot Working Technology, 40, 164-166, 169(2011).

    [5] Üstündağ Ö, Fritzsche A, Avilov V et al. Study of gap and misalignment tolerances at hybrid laser arc welding of thick-walled steel with electromagnetic weld pool support system[J]. Procedia CIRP, 74, 757-760(2018).

    [6] Üstündağ Ö, Gook S, Gumenyuk A et al. Hybrid laser arc welding of thick high-strength pipeline steels of grade X120 with adapted heat input[J]. Journal of Materials Processing Technology, 275, 116358(2020).

    [7] Nielsen S E. High power laser hybrid welding ‒ challenges and perspectives[J]. Physics Procedia, 78, 24-34(2015).

    [8] Bunaziv I, Akselsen O M, Frostevarg J et al. Deep penetration fiber laser-arc hybrid welding of thick HSLA steel[J]. Journal of Materials Processing Technology, 256, 216-228(2018).

    [9] Rethmeier M, Gook S, Lammers M et al. Laser-hybrid welding of thick plates up to 32 mm using a 20 kW fibre laser[J]. Quarterly Journal of the Japan Welding Society, 27, 74s-79s(2009).

    [10] Ling C, Meng W. Research status and prospect of high power fiber laser welding[J]. Hot Working Technology, 46, 15-18, 24(2017).

    [11] Zhao L, Cao Z, Zou J L et al. Keyhole morphological characteristics in high-power deep penetration fiber laser welding[J]. Chinese Journal of Lasers, 47, 1102005(2020).

    [12] Wu J Z. Fluid flow analysis and mechanism research on heat and mass transfer during deep-penetration laser welding[D](2019).

    [13] Cai H, Xiao R S. Statistic analysis on spatter characteristics in high power CO2 laser and fiber laser welding of thin sheet aluminum alloy[J]. Transactions of the China Welding Institution, 34, 27-30, 114(2013).

    [14] Feng L C. Research on characteristics of deep penetration welding of thick Q235 steel plates with 30 kW level laser[D](2018).

    [15] Zhang G L, Kong H, Zou J L et al. Spatter characteristics of high-power fibre laser deep penetration welding and effect of defocus on spatter[J]. Chinese Journal of Lasers, 48, 2202008(2021).

    [16] Zou J L, Li F, Niu J Q et al. Effect of laser-induced plume on welding process during high power fiber laser welding[J]. Chinese Journal of Lasers, 41, 0603005(2014).

    [17] Li S C. Study on the coupling behavior between metallic vapor and melt pool during deep penetration welding with 10-kW level laser[D](2014).

    [18] Li S R, An S H, Wang C M et al. Effect of shape and behavior of high power laser welding keyhole on weld morphology and mechanical properties[J]. Applied Laser, 39, 956-960(2019).

    [19] Chen G Y, Chen F, Zhou C et al. Welding defect suppression of stainless steel thick plate joint by 10-kW level laser welding[J]. Applied Laser, 38, 207-214(2018).

    [20] Zhou Y. Study on the cause of surface undercut and defects control during deep penetration laser welding of the thick plate with high power fiber laser[D](2014).

    [21] Zhang M J. Study on the behavior of metallic vapor plume and defects control during deep penetration laser welding of thick plate using 10-kW level high power fiber laser[D](2013).

    Xiaomei Liang, Yicheng Yang, Ruisheng Huang, Dexi Tian, Xiaoyu Chen. Analysis on Characteristics of Weld Formation with 10 kW Level High Power Laser‐Arc Hybrid Welding[J]. Chinese Journal of Lasers, 2023, 50(8): 0802107
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