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Study On Hybrid Heat Source Overlap Welding Of Magnesium Alloy Az31b

机译:镁合金Az31b的混合热源重叠焊接研究

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摘要

The magnesium alloy AZ31B was overlap welded by hybrid welding (laser-tungsten inert gas arc). According to the hybrid welding interaction principle, a new heat source model, hybrid welding heat source model, was developed with finite element analysis. At the same time, using a high-temperature metallo-graphical microscope, the macro-appearance and microstructure characteristics of the joint after hybrid overlap welding were studied. The results indicate that the hybrid welding was superior to the single tungsten inert gas welding or laser welding on the aspects of improving the utilized efficiency of the arc and enhancing the absorptivity of materials to laser energy. Due to the energy characteristics of hybrid overlap welding the macro-appearance of the joint was cup-shaped, the top weld showed the hybrid welding microstructure, while, the lower weld showed the typical laser welding microstructure.
机译:镁合金AZ31B通过混合焊接(激光-钨极惰性气体电弧)进行堆焊。根据混合焊接相互作用原理,通过有限元分析开发了一种新的热源模型,即混合焊接热源模型。同时,利用高温金相显微镜研究了混合搭接焊后接头的宏观外观和组织特征。结果表明,在提高电弧的利用效率和提高材料对激光能量的吸收性方面,混合焊接优于单钨极惰性气体保护焊接或激光焊接。由于混合堆焊的能量特性,接头的宏观外观呈杯状,顶部焊缝呈现出混合焊接的微观组织,而下部焊缝呈现出典型的激光焊接组织。

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