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Welding of aluminium by the MIG process with indirect electric arc (MIG-IEA)

机译:通过间接电弧MIG工艺焊接铝(MIG-IEA)

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摘要

A novel modification of the metal inert gas (MIG) welding method, which was developed to weld metal matrix composites, was applied to join plates of aluminium 12.5 mm thick. The plates were prepared with square edges and with a small single-V preparation with an angle of 45 degrees in the upper part. The electric arc was indirectly applied on the single-V butt weld over strips of Al-2024 placed on top of the joint. Thermal analysis showed that the efficiency of the MIG process with indirect electric arc (IEA) is increased due to the reduction of heat losses and fully penetrated welds with a high depth-to-width ratio can be produced as compared to plain MIG welding in which partial penetration and lack of lateral fusion were observed. Microstructural examination of the welds revealed distinct characteristics such as partially melted grains trapped within the weld next to the fusion line for IEA welds and the typical epitaxial and columnar growth from the base metal partially melted grains for plain welds, i.e. direct application of the electric arc (DEA).
机译:一种新的金属惰性气体(MIG)焊接方法的改进方法被开发用于焊接金属基复合材料,该方法被用于连接12.5毫米厚的铝板。制备的板具有正方形边缘,并且在顶部具有45度角的小的单V型制备。电弧被间接施加到位于接头顶部的Al-2024的单V形对接焊缝上。热分析表明,由于减少了热损失,间接电弧(IEA)的MIG工艺的效率得到了提高,与普通的MIG焊接相比,可以生产出具有高深宽比的全熔透焊缝观察到部分穿透和缺乏侧向融合。焊缝的显微组织检查显示出明显的特征,例如,在IEA焊缝的熔合线旁边,部分熔化的晶粒被困在焊缝中,以及平焊的贱金属部分熔化的晶粒典型的外延和柱状生长,即直接施加电弧(数据包络分析)。

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