Steel making | |
ArticleName | Analysis of HBI effect in charge on technological parameters of EAF melting |
ArticleAuthor | A. A. Korostelev, G. I. Kotelnikov, A. E. Semin, A. N. Bozheskov |
ArticleAuthorData | National University of Science and Technlogy “MISiS” (Moscow, Russia): Korostelev A. A., e-mail: koral-00@mail.ru
Volzhsky Pipe Plant (Volzhskiy, Russia): |
Abstract | Hot briquetted iron (HBI) is widely used in electric arc furnaces in Russian metallurgical plants in recent years as metal charge material. This affects the technical and economical parameters of melts. The main advantage of using charge with HBI compared to using 100 % scrap is improvement of the steel quality, meaning lower content of harmful impurities. The features of use of prospective material — HBI — in metal charge of electric arc, and electric furnaces operating on hard charge are shown in this article. It is also displayed that increase of HBI amount in the charge leads to increase of such basic technological melting parameters as consumption of electric power, oxygen, gas as well as slag-forming materials (lime and magnesium flux). It is accompanied also by quality improvement of obtained semiproduct in its content of non-ferrous metals and phosphorus. The charts showing the effect of HBI part on the melting technological parameters and on the content of non-ferrous impurities are built. Data analysis was carried out for steelmaking in EAF-150 at Russian metallurgical plants. Relatively low HBI cost in comparison with cast iron and expensive scrap, as well as noise level decrease based on increase of poured density of charge material, can be considered as the main HBI advantages. At present time the work aimed on determination of the optimal procedure of electric melting with HBI in charge is continuing. |
keywords | Hot-briquetted iron, melting technological parameters, electric arc furnaces, metallized raw material, steelmaking, power consumption |
References | 1. Shalimov A. G., Semin A. E., Galkin M. P., Kosyrev K. L. Innovation development of electro-steel making production. Moscow : Metallurgizdat, 2014. 308 p. |
Language of full-text | russian |
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