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Coaxial hybrid CO2-MIG welding system and its application in welding of aluminum alloys

机译:同轴混合CO2-MIG焊接系统及其在铝合金焊接中的应用

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Hybrid laser-arc welding is becoming one of the most significant laser welding technologies in industry due to its higher welding efficiency, higher tolerance to gaps between plates, and adjustment of composition and microstructure of the weld metal. Comparing with common off axis hybrid laser-arc welding, coaxially combined laser beam and arc can provide a symmetrical circular thermal source on the workpiece surface, which is convenient for 3-D welding. This paper introduces a coaxial hybrid CO2 laser-pulsed MIG welding system and conducts experiments of welding Al-Mg alloy plates under different welding conditions. The basic physical phenomena during welding are observed and the weld bead shape (penetration depth, weld width) are measured. The results show that hybrid laser-MIG can stabilize the arc, remarkably increase the total welding efficiency and improve the quality of weld bead formation. In addition, process and control techniques for hybrid laser-MIG welding are also proposed.
机译:混合激光电弧焊由于其更高的焊接效率,对板间间隙的更高耐受性以及对焊接金属的成分和微观结构的调整,正成为工业上最重要的激光焊接技术之一。与普通的离轴混合激光电弧焊相比,同轴组合的激光束和电弧可以在工件表面上提供对称的圆形热源,方便进行3D焊接。介绍了同轴混合CO2激光脉冲MIG焊接系统,并在不同的焊接条件下进行了铝镁合金板的焊接实验。观察焊接过程中的基本物理现象,并测量焊道形状(穿透深度,焊接宽度)。结果表明,混合激光-MIG可以稳定电弧,显着提高总焊接效率,并改善焊缝形成质量。此外,还提出了混合激光-MIG焊接的工艺和控制技术。

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