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首页> 外文期刊>Journal of Manufacturing Processes >Probing the influence of cold wire gas tungsten arc welding current waveforms on the aluminum-steel joining
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Probing the influence of cold wire gas tungsten arc welding current waveforms on the aluminum-steel joining

机译:探讨冷钢丝钨弧焊电流波形对铝钢加密的影响

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摘要

Cold wire gas tungsten arc welding (GTAW) process is used to join AA6061-T6 and galvannealed (GA) steel. The welding current distributed in sine, rectangle, square, and triangle AC waveform is used to understand their influence on the arc behavior, temperature distribution, joint profile, and the intermetallic compound (IMC) layer thickness. The instantaneous welding current and voltage waveforms are recorded in synchronization with the high-speed arc images to understand the arc behavior and heat input. The rate of change of instantaneous welding current between the polarities and the arc duration at the peak current is more in square and rectangle waveforms. The peak current in both the positive and negative pulses and the arc heat input of the triangle waveform is the highest among all the waveforms considered in the present work. The wetting length increases along with the reduction in the bead height sequentially with sine, rectangle, square, and triangle waveforms for a constant machine setting welding current. IMC layer thickness is minimum for the sine waveform and maximum for the triangle waveform. Overall, the welding current distributed in sine waveform is found to be suitable among all the waveforms studied in the present work for dissimilar metal joining of aluminum to steel.
机译:冷线煤气钨弧焊(GTAW)工艺用于加入AA6061-T6和GALVANNEALED(GA)钢。分布在正弦,矩形,正方形和三角形AC波形中的焊接电流用于了解它们对电弧行为,温度分布,关节轮廓和金属间化合物(IMC)层厚度的影响。瞬时焊接电流和电压波形与高速电弧图像同步,以了解电弧行为和热输入。在极性和峰值电流下的瞬时焊接电流的变化率更大在方形和矩形波形中。正面和负脉冲的峰值电流和三角形波形的电弧热输入是本工作中所考虑的所有波形中的最高。润湿长度随着恒定机械设定焊接电流的正弦,矩形,正方形和三角形波形而依次减小珠子高度。 IMC层厚度为正弦波形和三角形波形的最大值。总的来说,发现在正弦波形中分布的焊接电流是适用于本作各种工作中所研究的所有波形,用于铝的不同金属连接到钢。

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