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首页> 外文期刊>Science and Technology of Welding and Joining >Evaporation phenomena of magnesium from droplet at welding wire tip in pulsed MIG arc welding of aluminium alloys
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Evaporation phenomena of magnesium from droplet at welding wire tip in pulsed MIG arc welding of aluminium alloys

机译:铝合金脉冲MIG电弧焊中焊丝尖端熔滴中镁的蒸发现象

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摘要

A lot of welding fumes are generated due to the evaporation of magnesium during welding aluminium alloys using Al-Mg welding wires. Fume formation is mainly evaluated by two methods. An average formation rate can be calculated by collecting the fumes formed during a constant welding period. The other one is carried out by observing the droplet with a high speed video. However, these two methods become invalid in quantitatively evaluating the evaporation rate of magnesium in peak or background period during pulsed metal inert gas arc welding. In this paper, a novel method was developed to evaluate the evaporation rate and flux of magnesium in the peak period. First, a robot welding system was used to produce a series of droplets by shutting down the peak current at different times in the peak period. Second, the magnesium contents of these droplets were analysed. Finally, the evaporation rate and flux of magnesium in the peak period were calculated.
机译:使用Al-Mg焊丝焊接铝合金时,由于镁的蒸发,产生了大量的焊接烟尘。烟雾形成主要通过两种方法进行评估。通过收集在恒定焊接期间形成的烟雾,可以计算出平均形成速率。另一个是通过用高速视频观察液滴来进行的。但是,这两种方法在定量评估脉冲式金属惰性气体弧焊过程中峰值或背景期间镁的蒸发速率方面无效。本文开发了一种新的方法来评估高峰期镁的蒸发速率和通量。首先,通过关闭峰值时段在不同时间的峰值电流,使用了机器人焊接系统来产生一系列液滴。其次,分析这些液滴的镁含量。最后,计算了峰值时期镁的蒸发速率和通量。

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