Журналы →  Chernye Metally →  2017 →  №1 →  Назад

Steel making
Название Study of dephosphoration and desulphurization processes in the smelting of 20GL steel in the induction crucible furnace with consequent ladle treatment using rare earth metals
Автор N. K. Tursunov, A. E. Semin, E. A. Sanokulov
Информация об авторе

National University of Science and Technology “MISiS” (Moscow, Russia):

Tursunov N. K., Post-Graduate, e-mail: u_nadir@mail.ru
Semin A. E., Dr. Eng., Prof., Deputy Head of the Chair “Metallurgy of Steel and Ferroalloys”, e-mail: asemin2007@yandex.ru

 

Casting and Mechanical plant (Tashkent, Uzbekistan):
Sanokulov E. A., Director

Реферат

Abstract: Processes of steel dephosphoration and desulphurization with the use of solid slag-forming mixtures are carried out in coreless induction furnaces with a capacity of 6 tones, and reducing of the height of metal meniscus in the bath by raising the level of the metal has been occurred. 20GL steel has been used as the test metal. The authors obtained the new quantitative relationships that made the base of technological instructions for the production of 20GL steel; these relationships reflect the effect of temperature on the process of dephosphoration. The influence of metal holding under slag in the induction crucible furnace on the final sulfur content in the metal was established. In order to increase operational reliability, improvement of the mechanical properties and modification of non-metallic inclusions, the steel in the ladle was treated with Al, SiCa, REM. The results of the study are compared with ordinary melting without REM. It is shown that the melts processed by rare earth metals has a higher degree of desulphurization. The results of semi-industrial melting allowed to manufacture the metal with essentially lower sulfur content (up to 0.004 %), oxygen content (up to 0.0021 %) and nonmetallic inclusions, as well as to provide high quality of finished products in comparison with the existing technology. Usage of rare earth metals in smelting of 20GL steel also allowet to improve macro- and microstructure and mechanical properties.

Ключевые слова Induction crucible furnace, dephosphoration of steel, desulphurization of steel, rare earth metals, solid slag-forming mixtures
Библиографический список

1. Povolotskiy D. Ya., Roshchin V. E., Ryss M. A., Stroganov A. I., Yartsev M. A. Electrometallurgy of steel and ferroalloys : tutorial for universities. Second edition, revised and enlarged. Moscow : Metallurgiya, 1984.
2. Edneral F. P. Electrometallurgy of steel and ferroalloys. Forth edition, revised and enlarged. Moscow : «Metallurgiya», 1977. 488 p.
3. Farbman S. A., Kolobnev I. F. Induction furnaces for melting of metals and alloys. Moscow : Metallurgiya, 1968. 496 p.
4. Grigoryan V. A., Belyanchikov L. N., Stomakhin A. Ya. Theory of electric steel melting processes. Moscow : Metallurgiya, 1987. 272 p.
5. Schlackenatlas. Slag atlas. Translated from German. Moscow : Metallurgiya, 198. 208 p.
6. Basov A. V., Magidson I. A., Smirnov N. A. Electric conductivity of slags for steel refi ning in ladle-furnace aggregate. Elektrometallurgiya. 2012. No. 2. pp. 22–26.
7. Niladri S. Studies on dephosphorisation on steel in induction furnace. Steel research int. 2006. No. 4. pp. 242–249.
8. Egorov A. V. Electromentallurgy of steel and special electrometallurgy. Electric smelting ferrous metallurgy furnaces. Moscow : MISiS, 2007. 428 p.
9. Farnasov G. A. Electrotechnics, electronics, electrical equipment : tutorial for universities. Moscow : Intermet Engineering, 2000. 392 p.
10. Kostyakov V. N. Plasma-induction smelting. Kiev : «Naukova dumka», 1991. 205 p.
11. Strelnikov K. B. Induction-plasma smelting unit (6 t capacity) for cast iron and steel smelting. Thesis of a report of the XIV international scientific-technical conference «Radioelectronics, electrotechnics and energetics». Moscow : MEI, 2008.
12. Movenko D. A., Kotelnikov G. I., Semin A. E. Treatment condition improvement of pipe steel with cerium. Elektrometallurgiya. 2012. No. 8. pp. 7–12.
13. Grigoryan V. A., Stomakhin A. Ya., Utochkin Yu. I. et al. Physical and chemical calculations of electric-steel smelting processes : collection of tasks with solvings. Second edition, revised and enlarged. Moscow : MISiS, 2007. 318 p.
14. Paderin S. N., Ryzhonkov D. I., Serov G. V. et al. Thermodynamics and calculations of metallurgical processes. Moscow : MISiS, 2012. 235 p.
15. Balkovoy Yu. V., Aleev R. A., Bakanov V. K. Parameters of the first order interaction in iron-based melts : review information. Moscow : Chermetinformatsiya, 1987. 42 p.
16. Buzek Z. Hutnicke listy. 1979. Vol. 34, No. 10. pp. 699–704.
17. Sigworth G. K., Elliot J. F. Metal Science Journal. 1974. Vol. 8, No. 9. pp. 298–310.
18. Buzek Z. Hutnicke listy. 1984. Vol. 39, No. 11. pp. 764–769.
19. Samsonov A. N., Garevskikh I. A., Tsiviriko E. I. Influence of final deoxidation on nature and quantity of non-metalic inclusions in steels ShKh15 and long-term service of bearings. Instrument i podshipnikovye stali. 1973. Iss. 1. pp. 92–101.
20. Grigorovich K. V., Shibaeva T. V., Arsenkin A. M. Influence of technology of deoxidation of pipe steels on the content and quantity of non-metallic inclusions. Metally. 2011. No. 5. pp. 164–170.
21. Shalimov A. G., Semin A. E., Galkin M. P., Kosyrev K. L. Innovation development of electric-steel smelting production. Moscow : Metallurgizdat, 2014.
22. Dahl W. et al. Praxisorientierte raffination von Stahlschmelzen mit Seltenerd-metallen. Archiv für das Eisenhüttenwesen. 1982. No. 1. P. 5–12.
23. Kisilenko V. V., Dyudkin D. A., Marintsev S. N. et al. Infl uence of rareearth metals on pipe steel quality. Elektrometallurgiya. 2007. No. 4. pp. 16–20.

Language of full-text русский
Полный текст статьи Получить
Назад