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NTIS 바로가기Advanced materials research : AMR, v.337, 2011년, pp.511 - 516
Larkin, Nathan (University of Wollongong) , Pan, Zeng Xi (University of Wollongong) , van Duin, Stephen (University of Wollongong) , Callaghan, Mark (University of Wollongong) , Li, Hui Jun (University of Wollongong) , Norrish, John (University of Wollongong)
The feasibility of using Tandem Gas Metal Arc Welding (T-GMAW) to produce full penetration butt welds in 5mm ship panel steel plates has been assessed and compared to the current Submerged Arc Welding (SAW) process. Experiments conducted show that the T-GMAW process is feasible and demonstrated a si...
Virtual Fabrication Technology VFTTM, TWI services in Distortion Control, Available www. twi. co. uk.
Control of Weld Distortion and Accuracy Benefits Navy Ships, Marine Corps Armored Vehicles, and Commercial Applications, EWI Insights- Materials Joining News Letter, Winter 2004, Volume 17, Number 1 p.3.
D. Deng and H. Murakawa, Prediction of welding distortion and residual stress in a thin plate butt-welded joint, Computational Materials Science, vol. 43, Aug. 2008, pp.353-365. 10.1016/j.commatsci.2007.12.006
U. Tomoyuki, O. Toshio, Y. Kei, T. Manabu, U. Masao, and N. Kazuhiro, High-Speed Welding of Steel Sheets by the Tandem Pulsed Gas Metal Arc Welding System †, Pulse, vol. 34, (2005).
V. Fersini and S. Matera, The synchronized tandem wire welding process applied to the welding of structural plates, Welding International, vol. 23, Aug. 2009, pp.597-605. 10.1080/09507110802543211
Fronius International, Tandem Welding-Instruction Manual, Fronius International GmbH Wels Austria, (2007). 10.15407/tpwj2016.03.01
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