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Results 1 to 25 of 132

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The study of surface-active element oxygen on flow patterns and penetration in A-TIG weldingYUZHEN ZHAO; YAOWU SHI; YONGPING LEI et al.Metallurgical and materials transactions. B, Process metallurgy and materials processing science. 2006, Vol 37, Num 3, pp 485-493, issn 1073-5615, 9 p.Article

Deep penetration welding with high power CO2 laser = Soudage à forte pénétration avec un laser à CO2 de forte puissanceHIRAMOTO, S; OHMINE, M; OKUDA, T et al.Electron and laser beam welding. International Conference. 4. 1986, pp 339-340Conference Paper

Front-face control of root penetration in TIG welding of pipesHOFFMEISTER, H; DIETRICH, S; HUISMANN, G et al.Welding international. 1992, Vol 6, Num 7, pp 548-551, issn 0950-7116Article

The electron beam given an X-shaped trajectory as a means of reducing the amount of defects in the root of electron beam welds = Réduction des défauts de racine en soudage par faisceau d'électrons grâce à l'utilisation d'une vibration de faisceau en forme de XBELEN'KII, V. Y.Automatic Welding. 1986, Vol 39, Num 9, pp 37-39, issn 0005-108XArticle

Penetration depth in laser beam weldingMETZBOWER, E. A.Welding journal. 1993, Vol 72, Num 8, pp 403-s, issn 0043-2296, -407-sArticle

Analysis of Metal Transfer and Correlated Influences in Dual-Bypass GMAW of Aluminum : Various factors, including the welding gun setting, joint penetration, and base metal heat input during this process were examinedSHI, Y; LIU, X; ZHANG, Y et al.Welding journal. 2008, Vol 87, Num 9, issn 0043-2296, 229.s-236.sArticle

Development of weld bead shape control system for aluminium alloy butt welded jointsOKUI, N; TSUCHIYA, K; HIRATA, S et al.Welding international. 2001, Vol 15, Num 4, pp 257-265, issn 0950-7116Article

Anode heat transfer in TIG welding and its effect on the cross-sectional area of weld penetrationTANAKA, M; TERASAKI, H; FUJII, H et al.Welding international. 2006, Vol 20, Num 4, pp 268-274, issn 0950-7116, 7 p.Article

Experimental design of a welded joint with incomplete penetration for the restoration of irradiated Charpy impact specimens in pearlitic steelsFROLOV, S. A; ZINKOVSKII, V. I; KOZLOV, D. V et al.Welding international. 2006, Vol 20, Num 2, pp 141-145, issn 0950-7116, 5 p.Article

Technical note : creating deeper electron beam weld penetrationGROSS, P. M.Welding journal. 1993, Vol 72, Num 2, pp 61-62, issn 0043-2296Article

A study of melting efficiency in plasma arc and gas tungsten arc welding : a method for selecting optimal weld schedules to minimize net heat input is derived frm calorimetric measuremtsFUERSCHBACH, P. W; KNOROVSKY, G. A.Welding journal. 1991, Vol 70, Num 11, pp 287-297, issn 0043-2296Article

The preheating temperature parameter for deep penetration welding with high energy focused beams = Le paramètre de température de préchauffage pour le soudage profond avec des faisceaux focalisés de forte énergiePERETZ, R.Optics and lasers in engineering. 1988, Vol 9, Num 1, pp 23-34, issn 0143-8166Article

Cast-to-cast variations in GTA weld penetration of austenitic stainless steels = Etude de la pénétration des soudures TIG sur des aciers inoxydables austénitiques provenant de différentes couléesLEINONEN, J. I.Joining division council university research symposium. 5. 1985 International welding congress. 1985, pp 165-169Conference Paper

Tool penetration during friction stir spot welding of Al and Mg alloysGERLICH, A; SU, P; NORTH, T. H et al.Journal of materials science. 2005, Vol 40, Num 24, pp 6473-6481, issn 0022-2461, 9 p.Article

Anode melting from free-burning argon arcsUSHIO, Masao; TANAKA, Manabu; LOWKE, John J et al.IEEE transactions on plasma science. 2004, Vol 32, Num 1, pp 108-117, issn 0093-3813, 10 p., 1Conference Paper

Optimisation of the parameters of electron sources based on plasma emitters in the regime of multiple penetration of metalsVOLKOV, L. A; PCHELKIN, R. D; REMPE, N. G et al.Welding international. 2001, Vol 15, Num 6, pp 481-485, issn 0950-7116Article

Theoretical investigation of penetration characteristics in gas metal-arc welding using finite element methodSUBODH KUMAR; BHADURI, S. C.Metallurgical and materials transactions. B, Process metallurgy and materials processing science. 1995, Vol 26, Num 3, pp 611-624, issn 1073-5615Article

The limit of joint penetration in high energy density beam weldingCHIANG, S; ALBRIGHT, C. E.Welding journal. 1993, Vol 72, Num 3, pp 117.s-121.s, issn 0043-2296Article

Study on the prevention of defects in laser welds = Etude sur la prévention des défauts dans les soudures au laserOHMAE, T; YOSHIDA, Y; HIROZANE, H et al.Electron and laser beam welding. International Conference. 4. 1986, pp 349-350Conference Paper

Special features of laser welding with complete penetrationSKRIPCHENKO, A.I; SURKOV, A.V; BASHENKO, V.V et al.Welding Production. 1984, Vol 31, Num 5, pp 24-26, issn 0043-230XArticle

The effect of surface condition on acoustic emission during welding of aluminium with CO2 laser radiationDULEY, W. W; MAO, Y. L.Journal of physics. D, Applied physics (Print). 1994, Vol 27, Num 7, pp 1379-1383, issn 0022-3727Article

Liquation cracking in full penetration Al-Si weldsCAO, G; KOU, S.Welding journal. 2005, Vol 84, Num 4, pp 63.s-71.s, issn 0043-2296Article

On the selective silica application to improve welding performance of the tungsten arc process for a plain carbon steel and for aluminiumSIRE, Stéphane; MARYA, Surendar.Comptes rendus. Mécanique. 2002, Vol 330, Num 2, pp 83-89, issn 1631-0721Article

Spot plunged arc welding using covered electrodeTUSEK, J.Science and technology of welding and joining. 2002, Vol 7, Num 6, pp 384-390, issn 1362-1718, 7 p.Article

Efflux plasma charge-based sensing and control of joint penetration during keyhole plasma arc weldingZHANG, S. B; ZHANG, Y. M.Welding journal. 2001, Vol 80, Num 7, pp 157.s-162.s, issn 0043-2296Article

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