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Erschienen in: Metallurgist 1-2/2021

15.05.2021

Analysis of Electrical Conditions of Electric Arc Furnaces during Different Periods of Melting

verfasst von: Yu. M. Mironov, A. N. Mironova

Erschienen in: Metallurgist | Ausgabe 1-2/2021

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Abstract

A method for determining electrical and electric process parameter characteristics (in relative units) is proposed, which enables analyzing and optimizing the operating conditions of electric arc furnaces (EAF) by accounting for the negative effect of electric arc burning process during different periods of melting. The obtained data were compared to those calculated using common electrical characteristics to show that the actual generated arc power decreases by 30 to 40 % during melting and by 20 to 25 % during heating of liquid metal. The transformer voltage effect on the arc power and electric process parameters (arc emissivity (RF) and heating rate) has been studied. It was shown that the voltage variation effect on arc emissivity is especially strong (according to a square law), which makes it a very effective tool for intensifying the metal melting process. It was found that while maintaining a constant furnace current using a controller, it becomes necessary to reduce the transformer voltage as the required relative current value increases during melting to ensure preserving the optimal operating conditions. The following transformer voltage ratio was justified during different melting periods (melting, re-melting, and heating of liquid metal): (1.5–1.7)/(1.15–1.2)/1.0. An increase in transformer voltage without violating the optimal operating conditions is only possible by providing an optional control of the electrical circuit of the furnace using installed series reactors on the high-voltage side of the transformer.

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Literatur
1.
Zurück zum Zitat R. Sellan, M. Fabbro, and P. Burin, “The 300-t EAF melt-shop and the new Iskanderun minimill complex,” MPT Int., No. 2, 52–58 (2008). R. Sellan, M. Fabbro, and P. Burin, “The 300-t EAF melt-shop and the new Iskanderun minimill complex,” MPT Int., No. 2, 52–58 (2008).
2.
Zurück zum Zitat T. Adati and R. Sellan, “Heavy-duty 420-ton electric arc furnace by Tokyo Steel,” Japan. Metall. Ind. Technol., No. 2, 8–17 (2012). T. Adati and R. Sellan, “Heavy-duty 420-ton electric arc furnace by Tokyo Steel,” Japan. Metall. Ind. Technol., No. 2, 8–17 (2012).
3.
Zurück zum Zitat A. D. Svenchanskii, I. D. Zherdev, A. M. Kruchinin, et al., Electric Industrial Furnaces. Arc Furnaces and Special Heating Units [in Russian], Energoizdat, Moscow (1981). A. D. Svenchanskii, I. D. Zherdev, A. M. Kruchinin, et al., Electric Industrial Furnaces. Arc Furnaces and Special Heating Units [in Russian], Energoizdat, Moscow (1981).
4.
Zurück zum Zitat E. G. M. Brusa and S. Morsut, “Design and structural optimization of the electric arc furnace through a mechatronic-integrated modeling activity,” IEEE/ASME Transactions on Mechatronics, 20(3), 1099–1107 (2015).CrossRef E. G. M. Brusa and S. Morsut, “Design and structural optimization of the electric arc furnace through a mechatronic-integrated modeling activity,” IEEE/ASME Transactions on Mechatronics, 20(3), 1099–1107 (2015).CrossRef
5.
Zurück zum Zitat A. N. Makarov, “Calculation and analysis of the energy parameters of smelting in electric arc furnaces of conventional Consteel designs,” Metallurg, No. 10, 42–47 (2018). A. N. Makarov, “Calculation and analysis of the energy parameters of smelting in electric arc furnaces of conventional Consteel designs,” Metallurg, No. 10, 42–47 (2018).
6.
Zurück zum Zitat A. N. Makarov, “Calculation and analysis of the relationship between arc efficiency and location and energy consumption in smalland large-capacity electric arc furnaces. Part I. Calculation and analysis of the relationship between arc efficiency and energy consumption,” Metallurg, No. 4, 29–35 (2019). A. N. Makarov, “Calculation and analysis of the relationship between arc efficiency and location and energy consumption in smalland large-capacity electric arc furnaces. Part I. Calculation and analysis of the relationship between arc efficiency and energy consumption,” Metallurg, No. 4, 29–35 (2019).
8.
Zurück zum Zitat Yu. M. Mironov, “Analysis of the effect of arc burning on the parameters of electrical operating conditions as well as technical and economic characteristics of arc furnaces,” Elektrometallurgiya, No. 6, 2–10 (2019); DOI: 10/31044/1684-5781-2019-0-6-2-10. Yu. M. Mironov, “Analysis of the effect of arc burning on the parameters of electrical operating conditions as well as technical and economic characteristics of arc furnaces,” Elektrometallurgiya, No. 6, 2–10 (2019); DOI: 10/31044/1684-5781-2019-0-6-2-10.
9.
Zurück zum Zitat N. A. Pirogov et al., “Operating reactive resistance of electric arc furnaces,” in: Actual Problems of Creating Arc and Ore Thermal Furnaces [in Russian], Energoatomizdat, Moscow (1984), pp. 12–20. N. A. Pirogov et al., “Operating reactive resistance of electric arc furnaces,” in: Actual Problems of Creating Arc and Ore Thermal Furnaces [in Russian], Energoatomizdat, Moscow (1984), pp. 12–20.
10.
Zurück zum Zitat R. Cottardi, G. Miani, A. Partyka, and H. A. Movak, “Design and performance of UHCP (Ultra-high chemical power) EAF,” Steel Times Int., No. 6, 17–19 (2006). R. Cottardi, G. Miani, A. Partyka, and H. A. Movak, “Design and performance of UHCP (Ultra-high chemical power) EAF,” Steel Times Int., No. 6, 17–19 (2006).
Metadaten
Titel
Analysis of Electrical Conditions of Electric Arc Furnaces during Different Periods of Melting
verfasst von
Yu. M. Mironov
A. N. Mironova
Publikationsdatum
15.05.2021
Verlag
Springer US
Erschienen in
Metallurgist / Ausgabe 1-2/2021
Print ISSN: 0026-0894
Elektronische ISSN: 1573-8892
DOI
https://doi.org/10.1007/s11015-021-01146-5

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