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Computational nanotechnology, 2017, Issue 3, Pages 36–44 (Mi cn144)  

MECHANICAL ENGINEERING. NUCLEAR EQUIPMENT. LECTRICAL TECHNOLOGY

Studying energy efficiency of A-TIG welding of stainless steels with using of individual flux-oxides

R. M. Saidova, M. Kuschb, P. Mayra, K. Hoefera, Y. Huangc, D. R. Komilovaa

a Institute of Material Sciences, SPA «Physics-Sun» Academy of Sciences of Uzbekistan
b Chemnitz University of Technology, Germany
c Lanzhou University of Technology, China
References:
Abstract: At this article presented the results of researches on the influence of thermodynamic and physical-chemical properties of oxide fluxes to the energy efficiency of welding arc with TIG welding (A-TIG) of stainless steel CrNi18-10. The obtained results of research work allowed to determine the evaluation criteria of A-TIG welding arc energy efficiency to the penetration depth of welding metal and to identify thermodynamic and physical-chemical properties of individual flux-oxides to the melting properties energy efficiency of welding arc by different running energy of welding. Also it is determined the requirements to thermodynamic and physical-chemical properties of individual flux-oxides providing high energy efficiency melting peculiarities of arc with A-TIG welding.
Keywords: A-TIG welding, Stainless Steel, Oxides, Physical and Chemical Properties Oxides, Morphology of Weld Joints.
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Document Type: Article
Language: Russian
Citation: R. M. Saidov, M. Kusch, P. Mayr, K. Hoefer, Y. Huang, D. R. Komilova, “Studying energy efficiency of A-TIG welding of stainless steels with using of individual flux-oxides”, Comp. nanotechnol., 2017, no. 3, 36–44
Citation in format AMSBIB
\Bibitem{SaiKusMay17}
\by R.~M.~Saidov, M.~Kusch, P.~Mayr, K.~Hoefer, Y.~Huang, D.~R.~Komilova
\paper Studying energy efficiency of A-TIG welding of stainless steels with using of individual flux-oxides
\jour Comp. nanotechnol.
\yr 2017
\issue 3
\pages 36--44
\mathnet{http://mi.mathnet.ru/cn144}
\elib{https://elibrary.ru/item.asp?id=30079069}
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    Computational nanotechnology
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