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Prevention of humping bead associated with high welding speed by double-electrode gas metal arc welding

机译:通过双电极气体金属电弧焊防止与高速焊接相关的起伏焊珠

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摘要

Manufacturing productivity can be improved by increasing the welding speed. However, humping bead will occur when welding speed is beyond a certain value. An experimental system of double-electrode gas metal arc welding (DE-GMAW) was developed to implement high speed welding and prevent from humping bead formation. The DE-GMAW appropriately partition the heat energy between the wire and the base metal so that higher deposition rate of filler wire and suitable shape and size of weld pool are ensured. The arc images captured during DE-GMAW process were used to optimize the geometric parameters between the gas tungsten arc welding and the gas metal arc welding (GMAW) torches. The main arc and bypass arc integrated well and satisfactory weld bead formation was obtained. Through observing the weld pool behaviors from side view during DE-GMAW process, it was found that the height of both solidified and molten region at the pool tail is almost flat so that no humping bead was formed during DE-GMAW with the welding speed up to 1.7 m/min. The side view images of weld pool in DE-GMAW were compared with those in conventional GMAW, and the reason why DE-GMAW can suppress humping bead is shortly discussed.
机译:通过提高焊接速度可以提高生产效率。但是,当焊接速度超过一定值时,会出现隆起焊道。开发了双电极气体保护金属电弧焊(DE-GMAW)的实验系统,以实现高速焊接并防止隆起焊珠的形成。 DE-GMAW在焊丝和母材之间适当分配热能,以确保更高的填充焊丝沉积速率以及合适的焊缝形状和尺寸。在DE-GMAW工艺过程中捕获的电弧图像用于优化钨极气体保护焊和气体金属电弧焊(GMAW)焊炬之间的几何参数。主电弧和旁路电弧结合良好,焊缝形成良好。通过从侧面观察DE-GMAW过程中的熔池行为,发现熔池尾部的凝固区和熔融区的高度都几乎是平坦的,因此在DE-GMAW过程中,随着焊接速度的加快,不会形成隆起焊道。至1.7 m / min。比较了DE-GMAW和常规GMAW焊缝池的侧视图图像,并简要讨论了DE-GMAW抑制隆起焊道的原因。

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