Technology for the Production of High-Melting-Point Metal Master Alloys and their Testing in the Melting of Foundry Heat-Resistant Nickel Alloys

Author:

Min P. G.,Vadeev V. E.,Pitelin N. S.

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys,Mechanics of Materials,Condensed Matter Physics

Reference15 articles.

1. S. A. Krylov, E. V. Egorov, A. A. Makarov, and M. A. Druzhnov, “Mastering of alloys based on chromium in smelting of heat-resistant nickel alloys and steels,” Tr. VIAM: Elektron. Nauch.-Tekhnich. Zh., No. 1, 02 (2021); URL: http://www.viam-works.ru (accessed 04/01/2022). https://doi.org/10.18577/2307-6046-2021-0-1-13-22.

2. P. N. Nechaev, V. N. Nechaev, “Application of metal-thermal technology to obtain titanium-containing master alloys and compounds,” Titan, No. 2 (52), 28–32 (2016).

3. S. A. Savchenkov, V. L. Ugolkov, “Synthesis of magnesium master alloys during metallothermic reduction of compounds of rare earth metals,” Vest. Irkutskogo Gos.Tekhn. Univ., 23, No. 3 (146), 628–639 (2019).

4. A. I. Kovtunov, Yu. P. Chernyshova, D. A. Semistenov, and Yu. Yu. Khokhlov, “Study of the processes of production of aluminum-iron master alloys by arc remelting,” Lit. Rossii, No. 6, 39–40 (2011).

5. L. Wei, H. Zhou, H. Li, and Y. Zhou, “Arc deflection model and arc direction control for DC arc furnace,” J. Univ. Sci. Technol. Beijing Min. Metallurgy, Mater., 11, No. 4, 378–382 (2004).

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