Formation and suppression mechanism of wavy edge in oscillating laser-arc hybrid fillet welding of aluminum alloy

Laihege Jiang, Ling Cen, Suning Zhao, Dafeng Wang, Ming Gao
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Abstract

The weld surface characteristics of aluminum alloy fillet joints play a pivotal role in determining their performance. To enhance surface quality, oscillating laser-arc hybrid fillet welding was employed for aluminum alloy, along with a focus on the effect of beam oscillation on weld surface formation. Results revealed that a distinctive surface defect in aluminum alloy fillet welding manifested as a wavy edge on the main plate at oscillation frequencies () of 0 and 50 Hz. When ≥ 150 Hz, the wavy weld edge was effectively suppressed. As a result, the tensile fracture location in the defect-free joint transferred from the main plate to the rib plate. The corresponding ultimate tensile strength reached 282.3 MPa, signifying a substantial 160.1 % improvement. Analysis indicated that the high-speed vortex generated by laser oscillation was the decisive factor in suppressing the wavy edge. This effect eliminated the depressed edge of the molten pool and mitigated droplet impact. Ultimately, a comprehensive examination of the forces acting on the molten pool unveiled the formation and suppression mechanism of the wavy edge. These insightful findings carry significant implications for enhancing the aluminum alloy fillet welding process and deepening comprehension of weld surface formation.
铝合金振荡激光-电弧混合角焊波状边缘的形成与抑制机理
铝合金角焊缝的焊接表面特性对其性能起着关键作用。为了提高表面质量,对铝合金采用了振荡激光-电弧混合角焊,并重点研究了光束振荡对焊缝表面形成的影响。结果表明,在振荡频率()为 0 和 50 Hz 时,铝合金角焊的明显表面缺陷表现为主板上的波浪边缘。当振荡频率≥ 150 Hz 时,波浪形焊缝边缘被有效抑制。因此,无缺陷接头的拉伸断裂位置从主板转移到了肋板。相应的极限抗拉强度达到 282.3 兆帕,大幅提高了 160.1%。分析表明,激光振荡产生的高速涡流是抑制波浪边缘的决定性因素。这种效应消除了熔池的凹陷边缘,减轻了液滴的冲击。最终,对熔池作用力的全面研究揭示了波浪边缘的形成和抑制机制。这些深刻的发现对改进铝合金角焊工艺和加深对焊接表面形成的理解具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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