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High-Speed Welding of Steel Sheets by the Tandem Pulsed Gas Metal Arc Welding System

机译:串联脉冲气体保护金属弧焊系统进行钢板的高速焊接

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In tandem gas metal arc (GMA) welding, it is important to prevent adverse effects caused by electromagnetic interference between the two adjacent arcs to create good metal transfer. In the tandem pulsed GMA welding system, newly developed by the authors, pulse peak currents are fed simultaneously to the leading and trailing electrodes in principle and a unique pulse timing control is employed in which the end of a pulse peak current for the trailing wire is delayed by 0.5 ms from that for the leading wire to prevent the arc extinguishing By using the tandem pulsed GMA welding system, the effects of the inter-wire distance, inclination angle and welding current (wire feed rate) ratio between the two wires have been investigated to study the essential requirements for the welding torch configuration and the allocation of welding currents to obtain sound weld beads with the absence of undercut and humping in the high speed welding of steel sheets. When the welding speed was 3 m/min, a sound weld bead with uniform width was obtained with the trailing wire set at 9-degree push angle regardless of the inclination angle of the leading wire. The inter-wire distance greatly affected the weld bead formation in high speed welding. That is, the maximum welding speed was improved with the proper inter-wire distance in the range 9 to 12 mm. In the proper range of welding current ratio, I_T/I_L = 0.31 to 0.5, the maximum welding speed achieved was 4 to 4.5 m/min, which is 275% higher at the maximum when compared with single wire pulsed GMA welding (at a maximum welding speed of 1.2 m/min).
机译:在串联气体保护金属电弧焊(GMA)中,重要的是要防止两个相邻电弧之间的电磁干扰引起的不利影响,以实现良好的金属转移。在作者新开发的串联脉冲GMA焊接系统中,原则上将脉冲峰值电流同时馈送到前导电极和尾随电极,并且采用了独特的脉冲定时控制,其中尾线的脉冲峰值电流的末端为与导线的延迟时间相差0.5 ms,以防止电弧熄灭通过使用串联脉冲GMA焊接系统,两根线之间的线间距离,倾斜角度和焊接电流(焊丝进给速度)比的影响得到了影响研究人员研究了焊炬配置的基本要求以及分配焊接电流以在钢板的高速焊接中获得没有咬边和隆起的情况下获得良好焊缝的焊缝。当焊接速度为3m / min时,不管引线的倾斜角度如何,将尾焊丝设定为9度的推入角,就可获得宽度均匀的焊缝。线间距离极大地影响了高速焊接中焊缝的形成。即,在9至12mm范围内的适当的线间距离下,最大焊接速度得以提高。在适当的焊接电流比范围内,即I_T / I_L = 0.31至0.5,所达到的最大焊接速度为4至4.5 m / min,与单线脉冲GMA焊接相比(最大)提高了275%。焊接速度为1.2 m / min)。

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