[1]
B.E. Paton, Modern trends in research and development in the field of welding and structural strength, Automatic welding. Special Issue: October - November (2003) 7-13.
Google Scholar
[2]
A.S. Gordynets, Managing the process of arc welding disturbance response of the magnetic field: Author. dis. Candidate. tehn. Sciences: 05. 02. 10 / Gordynets Anton. Tomsk, (2012).
Google Scholar
[3]
A.S. Kiselev, A.S. Gordynets, R.I. Dedyuh, B.F. Sovetchenko, Effect of disturbance of the external magnetic field on the arc welding process with coated electrodes, Welding and diagnostics. 4 (2011) 37-40.
Google Scholar
[4]
B.E. Paton, Y.N. Saraev, V.A. Lebedev, Improvement of technological processes of welding and surfacing on the basis of methods of managed high-impact on the characteristics of melting and transfer of electrode metal, Proceedings of the International scientific and practical conference with members of the scientific school for young scientists "Innovative technologies and economics in engineering, Jurga, 2010, pp.15-22.
Google Scholar
[5]
A.G. Mazel, R.I. Dedyuh, A.F. Knyazkov, The arc stability for manual arc welding modulated current, Welding. 8 (1975) 27-26.
Google Scholar
[6]
Y.N. Saraev, Pulse welding process and welding, Novosibirsk-Union Science Association, Novosibirsk, (1994).
Google Scholar
[7]
R.I. Dedyuh, A.S. Kiselev, Improved stability parameters arc welding process with coated electrodes for low currents, Welding. 7 (2004) 3-4.
Google Scholar
[8]
Y.N. Saraev, V.P. Bezborodov, I.M. Poletika, A.V. Tutev, I.V. Nikonova, N.V. Kirilova, S.P. Sevastianov Improving the structure and properties of welded joints of large diameter pipes of low-alloy steel with pulsed arc welding, Automatic Welding. 12 (2004).
DOI: 10.1533/wint.2004.3305
Google Scholar