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Simulation Study on Weld Formation in Full Penetration Laser + MIG Hybrid Welding of Copper Alloy

机译:铜合金全渗透激光+ MIG杂交焊焊接型仿真研究

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摘要

Considering the coupling of a droplet, keyhole, and molten pool, a three-dimensional transient model for the full penetration laser + metal inert gas (MIG) hybrid welding of thin copper alloy plate was established, which is able to simulate the temperature and velocity fields, keyhole behavior, and generation of the welding defect. Based on the experimental and simulation results, the weld formation mechanism for the hybrid butt welding of a 2 mm-thick copper alloy plate was comparatively studied in terms of the fluid dynamic feature of the melt pool. For single laser welding, the dynamic behavior of liquid metal near the rear keyhole wall is complex, and the keyhole has a relatively drastic fluctuation. An obvious spattering phenomenon occurs at the workpiece backside. Meanwhile, the underfill (or undercut) defect is formed at both the top and bottom surfaces of the final weld bead, and the recoil pressure is identified as the main factor. In hybrid welding, a downward fluid flow is strengthened on the rear keyhole wall, and the stability of the keyhole root is enhanced greatly. There are large and small clockwise vortexes emerging in the upper and lower parts of the molten pool, respectively. A relatively stable metal bulge can be produced at the weld pool backside. The formation defects are suppressed effectively, increasing the reliability of full penetration butt welding of the thin copper alloy plate.
机译:考虑到液滴,钥匙孔和熔池的耦合,建立了薄铜合金板的全渗透激光+金属惰性气体(MIG)混合焊接的三维瞬态模型,能够模拟温度和速度焊接缺陷的田间,锁孔行为和产生。基于实验性和仿真结果,在熔体池的流体动力学特征方面,对2mm厚的铜合金板的混合对焊接焊接的焊接机理相对较好地研究。对于单锁孔壁附近的单次激光焊接,液态金属的动态行为是复杂的,并且钥匙孔具有相对剧烈的波动。在工件背面发生明显的溅射现象。同时,底部填充物(或底切)缺陷在最终焊缝的顶部和底表面上形成,并且焊接压力被识别为主要因素。在混合焊接中,在后锁孔壁上加强了向下的流体流动,并且大大提高了钥匙孔根的稳定性。熔池的上部和下部出现了大而小的顺时针涡旋。可以在焊接池背面产生相对稳定的金属凸起。有效地抑制了形成缺陷,提高了薄铜合金板的全渗透焊接的可靠性。

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