• Chinese Journal of Lasers
  • Vol. 47, Issue 6, 602001 (2020)
Song Gang*, Yu Peini, Li Taotao, and Liu Liming
Author Affiliations
  • Key Laboratory of Liaoning Advanced Welding and Joining Technology, School of Material Science and Engineering,Dalian University of Technology, Dalian, Liaoning 116024, China
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    DOI: 10.3788/CJL202047.0602001 Cite this Article Set citation alerts
    Song Gang, Yu Peini, Li Taotao, Liu Liming. Simulation and Analysis of Magnesium Alloy/Steel by Laser-Induced Arc Hybrid Welding[J]. Chinese Journal of Lasers, 2020, 47(6): 602001 Copy Citation Text show less

    Abstract

    In this study, a magnesium alloy/steel butt joint was taken as research material. A combined heat source model was implemented to simulate a laser-induced tungsten inert gas (TIG) hybrid welding heat source. The coupling effect between the laser and TIG and the formation of Fe-Ni solid solution zone were analyzed. ANSYS software was employed to simulate the welding temperature distribution and thermal cycle curve. Simulation and experimental results were in good agreement, verifying the accuracy and applicability of the proposed heat source model. The peak temperature of the joint reached 2249 ℃, and the Ni interlayer and adjacent steel base material were exposed to a high temperature, promoting interfacial metallurgical reaction and element diffusion and providing the temperature condition for the formation of Fe-Ni solid solution zone, AlNi phase, and an interface layer with a double solid solution structure. The residence time of the magnesium alloy molten pool was 0.28 s, which ensured that the liquid magnesium alloy could be fully wetted and spread on the steel and eventually achieved good joint formation. Under the agitation of the molten pool, the strength of the magnesium alloy weld was enhanced by dispersion distribution of strengthening phase AlNi.
    Song Gang, Yu Peini, Li Taotao, Liu Liming. Simulation and Analysis of Magnesium Alloy/Steel by Laser-Induced Arc Hybrid Welding[J]. Chinese Journal of Lasers, 2020, 47(6): 602001
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