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Physical Phenomena and Porosity Prevention Mechanism in Laser-Arc Hybrid Welding

机译:电弧电弧混合焊接的物理现象和防气孔机理

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Hybrid welding of stainless steels or aluminium alloys was performed with the heat sources of YAG laser and TIG, or YAG laser and MIG, respectively. The effects of welding conditions and melt flows on penetration depth, geometry and porosity formation were investigated with the X-ray transmission real-time observation method. Melt flows on penetration depth and geometry were consequently confirmed. Concerning porosity suppression, in TIG-YAG hybrid welding of stainless steel, no formation of bubbles was attributed to the absence of pores. On the other hand, disappearance of bubbles from the concave molten pool surface due to the arc pressure played an important role in reducing porosity in YAG-MIG hybrid welding of aluminium alloys at high arc currents.
机译:使用YAG激光和TIG或YAG激光和MIG的热源分别进行不锈钢或铝合金的混合焊接。利用X射线透射实时观察方法研究了焊接条件和熔体流动对熔深,几何形状和孔隙形成的影响。因此证实了熔体流动对熔深和几何形状的影响。关于气孔抑制,在不锈钢的TIG-YAG混合焊接中,没有气泡的形成是由于没有气孔。另一方面,在高电弧电流下,铝合金的YAG-MIG混合焊接中,电弧压力引起的气泡从凹熔池表面消失对降低孔隙率起着重要作用。

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