Research of pellet electrosmelting efficiency in arc furnace under the carbon oxide post-combustion by fuel oxygen burners
https://doi.org/10.12737/19700
Abstract
About the Authors
Victor A. StepanovRussian Federation
Lyudmila N. Krakht
Russian Federation
Eduard E. Merker
Russian Federation
Alexander Y. Kem
Russian Federation
Denis A. Kharlamov
Russian Federation
References
1. Merker, E.E., Fedina, V.V., Kochetov, A.I. Energosberegayushchiy rezhim plavki okatyshey v 150-t DSP. [Energy-saving mode of pellet melting in 150-t ASF.] Elektrometallurgiya, 2003, no. 9, pp. 43–44 (in Russian).
2. Henrion, R., Schleimer, F. Perfect electric melting. Iron and Steelmaker, 1982, vol. 9, no. 11, pp. 48–51.
3. Merker, E.E., Fedina, V.V., Kharlamov, D.A. Elektroplavka okatyshey v dugovoy pechi. [Pellet melting in arc furnace.] Bulletin “Ferrous Metallurgy”, 2004, no. 7, pp. 16–19 (in Russian).
4. Kohiani, T., Kudo, K., Murokami, S. Features and trend in electric steelmaking for new market mills. Transactions of the Iron and Steel Institute of Japan, 1981, no. 10, pp. 431–436.
5. Merker, E.E. Stepanov, V.A. Povyshenie energoeffektivnosti elektroplavki stali pri podache okatyshey v DSP cherez kanaly v elektrodakh. [Improvement in energy efficiency of steel electrosmelting while supplying pellets to ASF through the electrode ducts.] Bulletin “Ferrous Metallurgy”, 2014, no. 1, pp. 41–47 (in Russian).
6. Merker, E.E., Grishin, A.A., Kochetov, A.I. Sposob elektroplavki stali: patent 236009 Ros. Federatsiya. [Steel electrosmelting method.] Patent RF no. 236009, 2009 (in Russian).
7. Merker, E.E., Chermenev, E.A. Energosberegayushchie usloviya plavleniya metallizovannykh okatyshey pri ikh podache cherez trubchatye elektrody v vannu dugovoy pechi. [Energy-saving metallized pellet melting conditions when supplying them through the electrode ducts to the arc furnace bath.] Stal', 2015, no. 1, pp. 23–28 (in Russian).
8. Sazonov, А.V., Merker, E.E., Chermenev, E.A. Intensifikatsiya plavleniya okatyshey pri ikh zagruzke v zonu vozdeystviya elektricheskoy dugi na shlakovyy rasplav. [Intensification of pellets melting under charging them in the impact zone of the electric arc on the melted slag.] Bulletin “Ferrous Metallurgy”, 2011, no. 8, pp. 62–64 (in Russian).
9. Chermenev, E.A., Merker, E.E., Kobernik, O.P. Ob effektivnosti elektroplavki stali pri zagruzke metallizovannogo syr'ya cherez trubchatye elektrody v vannu dugovoy pechi. [On efficiency of steel electrosmelting when charging metallized raw materials through the tube wires to the arc furnace bath.] Bulletin “Ferrous Metallurgy”, 2013, no. 5, pp. 48–51 (in Russian).
10. Merker, E.E., Sazonov, А.V., Grishin, A.A. Osobennosti tekhnologii elektroplavki okatyshey v dugovoy pechi. [Features of pellet electrosmelting technology in arc furnace.] Izvestia. Ferrous Metallurgy, 2008, no. 2, pp. 31–33 (in Russian).
11. Merker, E.E., Fedina, V.V., Kochetov, A.I. Energosberegayushchiy rezhim plavki okatyshey v 150-t DSP. [Energy-saving mode of pellet melting in 150-t ASF.] Elektrometallurgiya, 2003, no. 9, pp. 43–44 (in Russian).
12. Merker, E.E., Fedina, V.V., Kharlamov, D.A. Elektroplavka okatyshey v dugovoy pechi. [Pellet melting in arc furnace.] Bulletin “Ferrous Metallurgy”, 2004, no. 7, pp. 16–19 (in Russian).
13. Merker, E.E. Stepanov, V.A. Povyshenie energoeffektivnosti elektroplavki stali pri podache okatyshey v DSP cherez kanaly v elektrodakh. [Improvement in energy efficiency of steel electrosmelting while supplying pellets to ASF through the electrode ducts.] Bulletin “Ferrous Metallurgy”, 2014, no. 1, pp. 41–47 (in Russian).
14. Merker, E.E., Chermenev, E.A. Energosberegayushchie usloviya plavleniya metallizovannykh okatyshey pri ikh podache cherez trubchatye elektrody v vannu dugovoy pechi. [Energy-saving metallized pellet melting conditions when supplying them through the electrode ducts to the arc furnace bath.] Stal', 2015, no. 1, pp. 23–28 (in Russian).
Review
For citations:
Stepanov V.A., Krakht L.N., Merker E.E., Kem A.Y., Kharlamov D.A. Research of pellet electrosmelting efficiency in arc furnace under the carbon oxide post-combustion by fuel oxygen burners. Vestnik of Don State Technical University. 2016;16(2):97-104. (In Russ.) https://doi.org/10.12737/19700