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Welding Aluminum Alloy 6061 with the Opposing Dual-Torch GTAW Process

机译:采用双焊炬GTAW工艺焊接铝合金6061

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摘要

Cracking is a major concern in welding aluminum alloys. Although weld solidification cracks can be eliminated through the addition of filler metal, the additives modify the alloy or base metal constituents and may not always be desirable. High-energy beam processes, such as electron beam welding, that result in minimal heat input reduce crack sensitivity, but their high cost limits their applications. In this study, the conventional gas tungsten arc welding process is modified by disconnecting the workpiece from the power supply and placing a second torch on the opposite side of the workpiece. Such a modification changes the direction of the current flow, improves the weld penetration and reduces the heat input. Using this modified process, 6061-T651 alloy was welded without filler metals. Analysis suggested the reduced heat input, the changed direction ofthecurrentflow and the symmetric heating were responsible for the observed reduction of the cracking sensitivity.
机译:裂纹是焊接铝合金的主要问题。尽管可以通过添加填充金属来消除焊缝凝固裂纹,但添加剂会改变合金或贱金属的成分,可能并不总是希望的。高能束工艺,例如电子束焊接,导致最小的热量输入,降低了裂纹敏感性,但其高成本限制了其应用。在这项研究中,通过断开工件与电源的连接,并在工件的另一侧放置第二个焊枪,对传统的钨极电弧焊工艺进行了改进。这种修改改变了电流的方向,提高了焊缝熔深并减少了热量输入。使用这种改进的工艺,可以焊接6061-T651合金而无需填充金属。分析表明,减少的热量输入,电流方向的改变和对称加热是观察到的开裂敏感性降低的原因。

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