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Effect of main arc voltage on arc behavior and droplet transfer in tri-arc twin wire welding

机译:主电弧电压对三弧双线焊接电弧行为和液滴传输的影响

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Increasing the weld deposition rate invariably increases the welding heat input in monofilament arc welding or high efficiency twin wire arc welding and hence cannot be easily optimized to satisfy the needs of special applications requiring high weld deposition. Tri-arc twin wire welding using direct current pulse power supply and variable polarity power supply is proposed. This helps reduce the welding heat input in the work-piece and increase the deposition rate. With increasing the main arc voltage, the droplet transition changed from an unstable mixing transition to a stable repulsion particle transition. In addition, the main arc voltage was increased to 35V, three arcs could be observed simultaneously. The main arc pulse, when switched on, changed the M arc, arc force, spot force, and plasma flow force. These changes hampered the balance of the original force system and promoted the generation of welding spatter. It may be noted that a sufficient main arc welding voltage can provide appropriate process stability. The third arc provided an additional separation force for the wire droplets and promoted the droplet transfer.
机译:增加焊接沉积速率总是增加单丝电弧焊接中的焊接热输入或高效双线电弧焊接,因此不能容易地优化以满足需要高焊接沉积的特殊应用的需求。提出了使用直流脉冲电源和可变极性电源的三弧双线焊接。这有助于减少工件中的焊接热量并增加沉积速率。随着主电弧电压的增加,液滴转变从不稳定的混合过渡变为稳定的排斥颗粒转变。另外,主电弧电压增加到35V,可以同时观察三个弧。开启时的主电弧脉冲,改变了M弧,电弧,点力和等离子体流量。这些变化阻碍了原始力系统的平衡,并促进了焊接飞溅的产生。可以注意到,足够的主电弧焊接电压可以提供适当的工艺稳定性。第三弧为线液滴提供了另外的分离力并促进液滴转移。

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