[1]
Information on http://almetcom.ru/page644150.
Google Scholar
[2]
M. Dric, E. Kadaner, T. Dobadkina, N. Turkina, Structure and mechanical properties of aluminum-scandium alloys, Rare metals in nonferrous alloys. Nauka, Moscow, (1975).
Google Scholar
[3]
V. Elagin, V. Zakharov, U. Filatov, T. Rostova, Development of perspective aluminum alloys doped with scandium, Pespective technologies of light and special alloys, Fizmatlit, Moscow, (1975).
Google Scholar
[4]
Information on http://rareearth.ru/ru/pub/20160818/02395.html.
Google Scholar
[5]
Information on https://aluminiumleader.ru/application/transport/.
Google Scholar
[6]
G. Turichin, M. Gogolukhina, L. Mamedova, Innovational Laser Technologies in Shipbuilding: Economic, Technological, Organisational Aspects, Asimuth of Scientific Research: Economics and Management. 4, (2018).
Google Scholar
[7]
Information on http://www.metallikaspb.ru/.
Google Scholar
[8]
Information on sr.rusal.ru/labour-protection/results-of-activity.php//.
Google Scholar
[9]
Information on https://rusal.ru/press-center/articles/9455/.
Google Scholar
[10]
Information on http://www.strf.ru/material.aspx?CatalogId=223&d_no=88685#. WkYsTVVl_IU.
Google Scholar
[11]
Information on http://government.ru/docs/3349/.
Google Scholar
[12]
Information on http://www.aoosk.ru/innovation/.
Google Scholar
[13]
Information on https://marketpublishers.ru/lists/11123/news.html.
Google Scholar
[14]
Information on www.infogeo.ru.
Google Scholar
[15]
F. Isupov, S. Ganin, V. Tcemenko, V. Michailov. Numerical simulation of sheet profiling process from aluminum alloy, In METAL 2015: 24th Int. Conference on Metallurgy and Materials. 1463-8, (2015).
Google Scholar
[16]
S. Ivanov, V. Karkhin, V. Mikhailov, J. Martikainen, E. Hiltunen, Assessment of the Sensitivity of Welded Joints of Al–Mg–Si Alloys to Liquation Cracks Under Laser Welding. Metal Science and Heat Treatment. Mar, (2018).
DOI: 10.1007/s11041-018-0225-2
Google Scholar
[17]
D. Kitaeva, Y. Rudaev, A. Rudskoy, G. Kodzhaspirov, On Dynamic Superplasticity of Aluminum Alloys with Initial Varying Grain Size Structure, InDefect and Diffusion Forum. 385, (2018), 78-83.
DOI: 10.4028/www.scientific.net/ddf.385.78
Google Scholar
[18]
Shaohua Yan, Hui Chen, Zongtao Zhu, Guoqing Gou, Hybrid laser-Metal Inert Gas welding of Al–Mg–Si alloy joints: Microstructure and mechanical properties, Materials and Design. 61, (2014), 160–167.
DOI: 10.1016/j.matdes.2014.04.062
Google Scholar
[19]
G. Turichin, M. Kuznetsov, O. Klimova-Korsmik, M. Sklyar, A. Zhitenev, A. Kurakin, A. Pozdnyakov, Laser-Arc hybrid welding perspective ultra-high strength steels: influence of the chemical composition of weld metal on microstructure and mechanical properties, Procedia CIRP. Jan, (2018 ).
DOI: 10.1016/j.procir.2018.08.017
Google Scholar
[20]
G. Turichin, E. Zemlyakov, K. Babkin, A. Kuznetsov, Monitoring of laser and hybrid welding of steels and Al-alloys, Physics Procedia. Jan, (2014 ).
DOI: 10.1016/j.phpro.2014.08.039
Google Scholar
[21]
O. Velichko, S. Ivanov, V. Karkhin, V. Lopota, I. Makhin. Structure and Properties of Thick-Walled Joints of Alloy 1570s Prepared by Friction Stir Welding, Metal Science and Heat Treatment. Sep, (2016 ).
DOI: 10.1007/s11041-016-0015-7
Google Scholar