锁孔
材料科学
焊接
等离子弧焊接
激光器
铝
热影响区
激光束焊接
蒸发
熔池
气体保护金属极电弧焊
等离子体
冶金
弧(几何)
电弧焊
复合材料
光学
机械工程
钨极气体保护焊
热力学
工程类
量子力学
物理
作者
Chuang Cai,Zilin Chen,Jia Xie,Zhenxin Li,Jie Yu,Hui Chen
标识
DOI:10.1177/13621718241234992
摘要
During laser–MIG hybrid welding process of aluminum alloys, the distance between laser and arc heat source (D LA ) is one of the key factors which affect the welding process stability. Weld formation exhibited various penetration depths, since the interaction between laser and arc changed. Hybrid plasma morphology fluctuated significantly at D LA of 0 mm and hybrid plasma height decreased with the increase of D LA . Violent evaporation of droplet and spatters were generated at D LA of 0 mm. Moreover, keyhole fluctuated violently and significant downward flow of liquid metal was induced at the bottom zone of molten pool due to the impact action of droplet. Keyhole fluctuation was suppressed and molten pool stability was improved at D LA of 2 mm.
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