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首页> 外文期刊>Science and Technology of Welding and Joining >Prevention of porosity by oxygen addition in fibre laser and fibre laser–GMA hybrid welding
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Prevention of porosity by oxygen addition in fibre laser and fibre laser–GMA hybrid welding

机译:通过在光纤激光器和光纤激光器-GMA混合焊接中添加氧气来预防孔隙

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摘要

Prevention of porosity in partial penetration fibre laser and fibre laser–gas metal arc hybrid welding is investigated. It is found that modulation of laser power prevents porosity formation in fibre laser welding, but that this method is not effective in hybrid welding. However, the addition of a small amount of oxygen to the molten pool can prevent porosity formation in both fibre laser and hybrid welding. This is attributed to stabilisation of the keyhole. During welding, oxygen reacts with dissolved carbon to form carbon monoxide (CO) in the keyhole. The CO partial pressure in the keyhole prevents the intense interaction between laser beam and molten metal, thus stabilising the keyhole. The role of CO formation is confirmed by the enhancement of porosity suppression with increased carbon content of the base metal.
机译:研究了防止部分渗透光纤激光器和光纤激光-气体金属电弧混合焊接中的孔隙的方法。已经发现,调制激光功率可以防止在光纤激光焊接中形成气孔,但是这种方法在混合焊接中无效。但是,向熔池中添加少量氧气可以防止在光纤激光器和混合焊接中形成气孔。这归因于锁眼的稳定。在焊接过程中,氧气与溶解的碳发生反应,在小孔中形成一氧化碳(CO)。锁孔中的CO分压可防止激光束与熔融金属之间的强烈相互作用,从而使锁孔稳定。 CO形成的作用已通过增加母材碳含量而提高的孔隙率抑制作用得到证实。

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