动态功率和振荡路径对铝合金对接焊缝成形和熔体流动行为的耦合效应

Jiangmei Cui, J.P. Oliveira, Bowen Pang, Jiajia Shen, Zhi Zeng
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引用次数: 0

摘要

通过数值模拟和实验研究了在 5A06 铝合金激光焊接过程中,动态功率和振荡路径之间的耦合效应对焊缝形成和熔池流体行为的影响。实验中比较了三种功率模式:等功率(EP)、延迟动态功率(D-DP)和非延迟动态功率(ND-DP)。实验结果表明,D-DP 和 ND-DP 模式都有利于提高机械性能。其中,D-DP 模式下形成的接头力学性能最好,平均抗拉强度达到母材的 ≈ 99.1%,与 EP 和 ND-DP 模式相比,分别提高了 ≈ 35.3% 和 ≈ 5.6%。数值模拟结果表明,D-DP 模式有效降低了熔池的平均流速,减少了液流之间的碰撞效应,抑制了流体对锁孔壁的冲击,提高了锁孔和焊接过程的稳定性,从而提高了接头的机械性能。
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Coupling effect of dynamic power and oscillation path on butt weld formation and melt flow behavior during aluminum alloys
The influence of the coupling effect between dynamic power and oscillation path on the formation of weld seams and the fluid behavior of the molten pool during laser welding of 5A06 aluminum alloy was investigated through numerical simulation and experimentation. Three power modes were compared in the experiments: equal power (EP), delayed dynamic power (D-DP), and non-delayed dynamic power (ND-DP). The experimental results show that both D-DP and ND-DP modes are favorable to improve the mechanical properties. Among them, the joints formed under the D-DP mode exhibit the best mechanical properties, with an average tensile strength reaching ≈ 99.1% of the base material, which is an increase of ≈ 35.3% and ≈ 5.6% compared to the EP and ND-DP modes, respectively. Numerical simulation results indicate that the D-DP mode effectively mitigates the average flow velocity of the molten pool, reduces the collision effects between liquid flows, suppresses the impact of fluid on the keyhole walls, and improves the stability of the keyhole and the welding process, thereby enhancing the mechanical properties of the joints.
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