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Keyhole Behavior and Liquid Flow in Molten Pool during Laser-Arc Hybrid Welding

机译:激光 - 电弧混合焊期间熔池孔孔行为及液体流动

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Hybrid welding was carried out on Type 304 stainless steel plate under various conditions using YAG laser combined with TIG arc. During arc and laser-arc hybrid welding, arc voltage variation was measured, and arc plasma, laser-induced plume and evaporation spots as well as keyhole behavior and liquid flow in the molten pool were observed through CCD camera and X-ray real-time transmission apparatus. It was consequently found that hybrid welding possessed many features in comparison with YAG laser welding. The deepest weld bead could be produced when the YAG laser beam of high power density was shot on the molten pool made beforehand stably with TIG arc. A keyhole was long and narrow, and its behavior was rather stable inside the molten pool. It was also confirmed that porosity was reduced by the suppression of bubble formation in hybrid welding utilizing a laser of a moderate power density.
机译:在使用YAG激光器与Tig Arc结合的各种条件下,在304型不锈钢板上进行混合焊接。在电弧和激光激发混合焊接期间,通过CCD相机和X射线实时观察到电弧电压变化,并通过CCD相机和熔池中的孔孔行为以及熔池中的钥匙孔行为和液体流动传输装置。因此,与YAG激光焊接相比,混合焊接具有许多特征。当用蒂格弧线预先在熔池上射击熔池时,可以产生最深的焊珠。钥匙孔长而窄,其行为在熔池内相当稳定。还证实,利用中等功率密度的激光抑制混合焊接中的气泡形成,降低了孔隙率。

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