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Application of pulse plasma MIG welding process to Al/steel dissimilar joining

机译:脉冲等离子体MIG焊接工艺在Al /钢异常加入中的应用

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摘要

Arc welding of aluminium and steel joins are commonly inundated by the formation of brittle intermetallic compounds (IMC) at the aluminium-steel interface. As the formation of IMC is closely related to the heat input into the base metals, it is hypothesised that the ability to regulate the heat input would enable the control of the thickness of IMC. This paper proposes the use of a pulse plasma MIGW system to regulate the heat input during the welding process. A shadowgraph method was used to compare the weld droplet stability of the pulse plasma MIGW with a pulse MIGW system. It was found that the plasma MIGW generated a regular heat input into the base metal due to the smoothness of the droplet detachment and resulted in the formation of IMC with uniform thickness. Al/steel joining was then conducted using both pulsed plasma MIGW and pulse MIGW systems, and the resulting IMC formations and thicknesses were evaluated. It was found that the formation and thickness of IMC in Al/steel dissimilar welding can be controlled by using pulse plasma MIGW. Its lower droplet temperature and decreased cooling rate during welding would suppress the formation of Fe2Al5 and FeAl3, and thus decreasing the overall thickness of IMC at the joining interface.
机译:铝和钢连接的电弧焊接通常通过在铝 - 钢界面中形成脆性金属间化合物(IMC)而淹没。由于IMC的形成与进入基础金属的热量密切相关,因此假设调节热输入的能力将能够控制IMC的厚度。本文提出了使用脉冲等离子体MIGW系统来调节焊接过程中的热输入。用于将脉冲迁移系统的脉冲等离子体MIGW的焊接液滴稳定性与脉冲MIGW系统进行比较。发现由于液滴脱离的平滑度,等离子体MIGW由于液滴脱离的平滑度而产生的常规热量进入基础金属中,并导致具有均匀厚度的IMC。然后使用脉冲等离子体MIGW和脉冲MIGW系统进行Al /钢连接,并评估所得到的IMC形成和厚度。发现可以通过使用脉冲等离子体MIGW来控制Al /钢异种焊接中的IMC的形成和厚度。其较低的液滴温度和焊接期间的冷却速率降低将抑制Fe2Al5和Feal3的形成,从而降低了在连接界面处的IMC的总厚度。

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