Uneingeschränkter Zugang

Efficiency of Using Cored Graphitized Electrodes on Electric Arc Furnaces of Direct Current


Zitieren

D.A. Dyudkin, V.V. Kisilenko, Production of steel, vol. 1. “Teplotekhnik”, Moscow, 2008. Search in Google Scholar

“Steeltime” - informational portal of ferrous and nonferrous metallurgy, May 2013. Search in Google Scholar

A.G. Belkovsky, Ya.L. Kats, M.V. Krisnyansky: State-of-art and trends of development of technology of steel production in EAF and their designs (OJSC “VNIIMETMASH”) UDK 669.187.2. Steelmaking production, newsletter “Black Metallurgy», 3(2013) 73-75. Search in Google Scholar

Bogachenko A.G., Mischenko D.D., Braginets V.I., Galinich V.I., Neylo I.A.: Cored graphitized electrodes. Electric arc furnaces of direct current (EAF DC). Saving of electric power. Proc. Medovar Mevorial Symposium Kyiv, Ukraine, 2016 p.185-193.10.15407/sem2016.01.09 Search in Google Scholar

Boom R.: Breakthrough development in ironmaking and steelmaking: collaboration or competition.Proc.2nd International Conference «Advanced in Metallurgical Processes and Materials». Kyiv, Ukraine, 2015 p.73-77. Search in Google Scholar

D.A. Dyudkin, S.Yu. Bat et.al. Production of steel in the ladle. – furnace unit. LLC “Yugo-Vostok”, Donetsk, 2003. Search in Google Scholar

M. Ramires, I. Alexis, G. Trapage et al. : Stirring of melt in the arc furnace at direct current. News of ferrous metallurgy abroad, 3(2002) 54-57. Search in Google Scholar

Classification of modern arc furnaces. Arc furnaces at alternating and direct current. The Ukrainian Association of Steelmakers. Informational portal. April 2015. Search in Google Scholar

A. Savitsky: About the choice of rational design of EAF at direct current. Elektrometallurgia, 8(2000) 13-19 Search in Google Scholar

V.M. Soyfer: Response to the article of A.V. Rechkalov, I.Yu. Zinurov, M.G. Kuzmin et al. “The basic requirements to arc furnaces producing metal for production of castings” Elektrometallurgia, 12(2014) 9-12. Search in Google Scholar

D.G. Egansky: Trends in the development of electric steel production. Elektrometallurgia, 5(2001) 3-18. Search in Google Scholar

B.P. Platonov, O.I. Kotelnikov et al.: Investigation of dust and gas emissions of arc furnaces at direct and alternating current. Foundry production, 1(1996) 24-27. Search in Google Scholar

A.M. Volodin, A.S. Bogdanovsky, V.S. Malinovsky: The results of operation of furnace at direct current EAF DC-20 vocational AT the JSC “Tyazhpressmash. Foundry production 9(2004) 31-35. Search in Google Scholar

A.N. Makarov, M.B. Shimko, V.V. Ostrik: Analysis of basic technical and economic indicators of operation of arc furnaces at direct and alternating current. Elektrometallurgia, 3(2004) 5-9. Search in Google Scholar

A.F. Milyaev, S.V. Kadnikov: Selection of type and capacity of aggregates for melting pig iron and steel in the foundry shops. Elektrometallurgia 11 (2002) 21-24. Search in Google Scholar

N.V. Okorokov, L.E. Nikolsky, A.V. Egorov.: Influence of tubular electrodes on thermal operation of arc electric steel furnace. News of higher educational institutions. Ferrous metallurgy, 9(1962) 105-110. Search in Google Scholar

B.E. Paton, V.I. Lakomsky et al.:Cored electrodes of electric arc furnaces. Ferrous metals, 5(2011) 13-15. Search in Google Scholar

E.A. Kazachkov, A.D. Chepurnoy: Ways of improvement of productivity of electric arc furnaces. Newsletter of Pryazovskyi State Technical University. 15 (2005) 1-5. Search in Google Scholar

V.N. Sidorets, I.V. Pentegov, Deterministic chaos in nonlinear circuits with electric arc. International Association “Welding”, Kyiv, 2013. Search in Google Scholar

eISSN:
2083-4799
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Materialwissenschaft, Funktionelle und Intelligente Materialien