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Activated flux TIG welding of non- ferrous metals Kurtulmus M, Yukler AI, Dogan E Indian Journal of Chemical Technology, 26(2), 164, 2019 |
2 |
Effect of thermal stability of powdered oxide on joint penetration and metallurgical feature of AISI 4130 steel TIG weldment Tseng KH, Shiu YJ Powder Technology, 286, 31, 2015 |
3 |
Application of iron-based powders in tungsten inert gas welding for 17Cr-10Ni-2Mo alloys Tseng KH, Chuang KJ Powder Technology, 228, 36, 2012 |
4 |
Numerical analysis of AC tungsten inert gas welding of aluminum plate in consideration of oxide layer cleaning Tashiro S, Miyata M, Tanaka M Thin Solid Films, 519(20), 7025, 2011 |
5 |
Phase formation in austenitic stainless steel A-TIG welds Rodrigues A, Loureiro A, Batista AC Materials Science Forum, 514-516, 549, 2006 |
6 |
Wear of the tungsten electrode at the TIG arc-spot welding of dissimilar metals Dobranszky J, Bella S, Kientzl I Materials Science Forum, 473-474, 73, 2005 |
7 |
Effect of activating fluxes on the penetration capability of the TIG welding arc: study of fluid-flow phenomena in weld pools and the energy concentration in the anode spot of a TIG arc plasma Paillard P, Saindrenan J Materials Science Forum, 426-4, 4087, 2003 |