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Influence of oxygen on weld geometry in fibre laser and fibre laser-GMA hybrid welding

机译:氧对光纤激光器和光纤激光器-GMA混合焊接中焊缝几何形状的影响

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摘要

The effect of oxygen on weld geometry during keyhole mode welding has been investigated by adding a small amount of oxygen to the shielding gas during fibre laser and fibre laser-gas metal arc hybrid welding. The results indicate that the penetration depth increases and the weld width decreases with increasing oxygen concentration. This effect is attributed to the formation of a deeper keyhole when oxygen is present. The addition of sulphur up to 1500 ppm in the molten pool has no significant effect on the penetration depth. This behaviour indicates that the Marangoni convection and surface tension are not the main reasons for the deeper weld penetration when oxygen is added to the shielding gas. The increase in the penetration depth owing to oxygen addition is consistent with the formation of CO by reaction between dissolved carbon and oxygen. Rapid generation of CO in the keyhole expands the keyhole and results in deeper weld penetration.
机译:通过在光纤激光和光纤激光-气体-金属电弧混合焊接过程中向保护气体中添加少量氧气,研究了氧气对小孔模式焊接过程中焊缝几何形状的影响。结果表明,随着氧气浓度的增加,熔深增加,焊缝宽度减小。当存在氧气时,这种作用归因于更深的锁孔的形成。在熔池中添加高达1500 ppm的硫对渗透深度没有显着影响。这种现象表明,当向保护气体中添加氧气时,Marangoni对流和表面张力不是导致焊缝更深熔深的主要原因。由于添加氧而导致的渗透深度的增加与通过溶解的碳与氧之间的反应形成CO一致。在锁孔中快速生成一氧化碳会扩大锁孔并导致更深的焊缝熔深。

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