The effect of AA5083H116 2-layer MIG welding speed on physical and mechanical properties

M. Mudjijana
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引用次数: 1

Abstract

Metal welding can be performed on 1 layer or more depending on the thickness of the plate welded. In the case of 3-mm-thick plates, high-efficiency welding can be carried out on 1 layer if appropriate welding speed, voltage, and amperage are applied. If two layers are to be used, sound weld of 3-mm-thick plates can be achieved if higher welding speed and lower voltage and amperage are applied. This research was intended to conduct 2-layer MIG weld works at welding speeds of ≥10, 13, and 16 mm/s in accordance with previous research studies and to analyze the physical and mechanical properties generated. This research employed the AA5083H116 material, ER5356 electrode, and argon gas. During the welding processes, the thermal cycles were recorded, and after the processes, the welding results were observed for the macro- and microstructures and for the optimal welding speed under an SEM. In addition, tensile tests, Vickers microhardness tests, and corrosion tests were also undertaken. The results show that the 2-layer MIG welding at the welding speed of 10 mm/s produced the best physical and mechanical properties.
AA5083H116 2层MIG焊接速度对其物理力学性能的影响
根据所焊板的厚度,金属焊接可在1层或更多层上进行。对于3mm厚的板材,如果采用合适的焊接速度、电压和安培,1层可以进行高效焊接。如果采用两层焊接,采用较高的焊接速度和较低的电压和安培,可以实现3mm厚板的良好焊接。本研究拟根据前人的研究,在焊接速度≥10、13和16 mm/s的情况下进行2层MIG焊接工作,并分析所产生的物理力学性能。本研究采用AA5083H116材料,ER5356电极,氩气。焊接过程中记录了热循环过程,焊接后通过扫描电镜观察了焊接结果的宏观组织和微观组织以及最佳焊接速度。此外,还进行了拉伸试验、维氏显微硬度试验和腐蚀试验。结果表明,当焊接速度为10 mm/s时,2层MIG焊接可获得最佳的物理力学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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