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The mechanisms of arc coupling and rotation in cable-type welding wire CO2 welding

机译:电缆型焊丝CO2焊接电弧耦合与旋转机制

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摘要

In the cable-type welding wire CO2 welding process, the arc coupling and rotation behaviors are greatly different from those in typical single-wire CO2 welding. A deflection length model is proposed to explain the phenomenon of arc shape interaction and coupling, which is considered to be caused by a concentration of forces at the central wire resulting from the electromagnetic forces generated by the currents running through the individual wires. The arc rotation is influenced by the compositional characteristics of the cable-type welding wire as the wire is fed, resulting in self-rotation as the wire melts. The arc stability, the droplet transfer behavior and the weld pool are affected by the balance of the forces during the welding process and cause the arcs from the cable-type welding wire to couple together, resulting in a stable arc and stable droplet transfer. The combined forces acting on the weld pool are beneficial for the transfer of arc heat and droplet heat to the side and bottom of the molten pool, affecting the weld pool and weld formation.
机译:在电缆型焊丝CO2焊接过程中,电弧耦合和旋转行为与典型的单线CO2焊接中的大大差异很大。提出了一种偏转长度模型来解释弧形相互作用和耦合的现象,这被认为是由由通过通过各个线路的电流产生的电磁力产生的中央线处的力浓度引起的。电弧旋转受电缆型焊丝的组成特性的影响,因为电线被送入,导致电线熔化时自旋转。电弧稳定性,液滴传递行为和焊接池受到焊接过程中力的平衡的影响,并使电弧从电缆型焊丝结合在一起,导致稳定的电弧和稳定的液滴传递。作用在焊接池上的组合力有利于将电弧热量和液滴热转移到熔池的侧面和底部,影响焊接池和焊接。

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