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Microstructure of Al-Mg-Si Weld Joints Produced by Pulse TIG Welding

机译:脉冲氩弧焊产生的Al-Mg-Si焊接接头的显微组织

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摘要

Al-Mg-Si alloys (6000 series) are heat-treatable aluminum alloys and are extensively used in various sectors such as aerospace, automobiles, and general construction. Fabrication of these alloys often requires welding. Pulse TIG offers many advantages over conventional TIG welding as far as control of microstructure is concerned. This research investigated the effect of pulsed TIG welding parameters such as pulse duration, peak current, pulse frequency on the microstructure of heat-affected zone, and fusion line and weld metal of Al-0.5 percent Mg-0.5 percent Si weld joints. It was observed that a significant change in microstructure takes place in moving from the base metal to weld centerline. Dissolution of phases present along the grain boundary occurs as the fusion line is approached. Grain structure of heat-affected zone, fusion line, and weld metal appears to have tangible relationship with pulse parameters.
机译:Al-Mg-Si合金(6000系列)是可热处理的铝合金,广泛用于航空航天,汽车和一般建筑等各个领域。这些合金的制造通常需要焊接。就微观结构的控制而言,脉冲TIG焊比传统TIG焊具有许多优势。这项研究调查了脉冲TIG焊接参数(例如脉冲持续时间,峰值电流,脉冲频率)对热影响区的微观结构以及Al-0.5%Mg-0.5%Si焊接接头的熔合线和焊接金属的影响。观察到,从母材到焊缝中心线的显微组织发生了重大变化。随着熔合线的接近,沿晶界出现的相发生溶解。热影响区,熔合线和焊缝金属的晶粒结构似乎与脉冲参数有明显关系。

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