The effect of welding current on welding quality was studied in laser-plasma arc hybrid welding of 1420 Al- Li alloy using both experimental and numerical modeling methods. Results show that the weld pools are all hybrid welding type under welding current of 40-80A, both length and width of the weld pool increase approximately linearly with the increasing of welding currents. Increasing welding current can significantly reduce the porosity in the welds. Increasing the welding current will increase the stay time of liquid weld pool and hence allow the pores grow and move out of weld pools more easily. The porosity in weld is therefore decreased significantly. This paper is beneficial for the process optimization and quality improvement of the hybrid welding of Al- Li alloy.
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3rd Pacific International Conference on Laser Materials Processing, Micro, Nano and Ultrafast Fabrication
April 16–18, 2008
Beijing, People's Republic of China
ISBN:
978-0-912035-89-5
PROCEEDINGS PAPER
Studies on the effect of welding current in laser-plasma arc hybrid welding of an Al-Li alloy Available to Purchase
Baohua Chang;
Baohua Chang
Department of Mechanical Engineering, Key Laboratory for Advanced Materials Processing Technology, Tsinghua University
, Beijing, 100084, P. R. China
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Jing Zhou;
Jing Zhou
Department of Mechanical Engineering, Key Laboratory for Advanced Materials Processing Technology, Tsinghua University
, Beijing, 100084, P. R. China
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Zhining Li;
Zhining Li
Department of Mechanical Engineering, Key Laboratory for Advanced Materials Processing Technology, Tsinghua University
, Beijing, 100084, P. R. China
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Dong Du
Dong Du
Department of Mechanical Engineering, Key Laboratory for Advanced Materials Processing Technology, Tsinghua University
, Beijing, 100084, P. R. China
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Published Online:
April 01 2008
Citation
Baohua Chang, Jing Zhou, Zhining Li, Dong Du; April 16–18, 2008. "Studies on the effect of welding current in laser-plasma arc hybrid welding of an Al-Li alloy." Proceedings of the 3rd Pacific International Conference on Laser Materials Processing, Micro, Nano and Ultrafast Fabrication. PICALO 2008: 3rd Pacific International Conference on Laser Materials Processing, Micro, Nano and Ultrafast Fabrication. Beijing, People's Republic of China. (pp. pp. 307-311). ASME. https://doi.org/10.2351/1.5057028
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