Simulation of electromagnetic processes due to metal carbonisation in synthetic cast-iron production / Bolotin K., Frizen V., Shvidkiy E. // 2016 19th International Symposium on Electrical Apparatus and Technologies, SIELA 2016. - 2016. - V. , l. .

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Type:
Conference Paper
Abstract:
In the article the impact of controlled metal mixing in an induction crucible furnace on energy parameters of carbonisation process in the production technology of synthetic cast-iron in the modernised melting unit is assessed on the basis of induction crucible furnace (ICF) with a capacity of 12 tons. It assesses the effectiveness of height ratio change to diameter ratio crucible of the induction furnace from 1.1 to 0.43, as well as double decrease the frequency with double decreasing supply voltage. Simultaneous change of geometric relation and halving the frequency of the supply source will increase the metal movement speed in 4-5 times as a result of it the loss of energy during the carbonisation process can be reduced by 1.7 times. © 2016 IEEE.
Author keywords:
carbonisation; energy losses; induction crucible furnace; induction stirring; synthetic cast-iron
Index keywords:
Carbonization; Crucible furnaces; Crucibles; Energy dissipation; Iron; Carbonisation; Electromagnetic process; Energy parameters; Geometric relations; Induction crucible furnace; Induction furnace; In
DOI:
10.1109/SIELA.2016.7542976
Смотреть в Scopus:
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84985930368&doi=10.1109%2fSIELA.2016.7542976&partnerID=40&md5=427c0be56038171741f92c7b8e5883cd
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Art. No. 7542976
Link https://www.scopus.com/inward/record.uri?eid=2-s2.0-84985930368&doi=10.1109%2fSIELA.2016.7542976&partnerID=40&md5=427c0be56038171741f92c7b8e5883cd
Affiliations Ural Power Engineering Institute, Ural Federal University, Yekaterinburg, Russian Federation
Author Keywords carbonisation; energy losses; induction crucible furnace; induction stirring; synthetic cast-iron
References Varlamov, V.K., Drobyshev, A.N., Kaminska, I.A., A Method for Producing A Modified Synthetic Iron in An Induction Furnace of Industrial Frequency, pp. 11-13. , Patents. 1636448 USSR No. 4451098/02;appl. 06/28/88; publ. 03.23.91, Bul. No; Farbman, S.A., Kolobnev, I.F., (1968) Induction Furnaces for Melting of Metals and Alloys, 496p. , 5th edition revised and supplemented. M .: Metallurgy; Janerka, K., Bartocha, D., Szajnar, J., The carburisation process rates in synthetic cast iron production (2006) AMME, 18, pp. 379-382. , September-October; Tyre, L.L., Stolov M J, M.J., Electromagnetic device for controlling the circulation of metal in electric furnaces.-2nd ed (1991) Ext. and Rev. M .: Metallurgy; Mortimer, J., (1999) Tomorrow's Induction Melt Shop Technologies Today Foundry., (3); Luzgin, V.I., Petrov, A.Y., Fatkullin, S.M., Friesen, V.E., Induction melting and casting systems for the production of high quality cast iron (2013) Foundry Russia, (5), pp. 27-30; Frizen, V.E., Sarapulov, F.N., Formation of mhd processes in induction crucible furnace at single-phase supply of inductor (2010) Russian Electrical Engineering, 81 (3), pp. 159-164. , March; Sidorov, O.J., Sarapul, F.N., Sarapulov, S.F., Finite element methods and finite differences in elektromehanieke and electrotechnology (2010) M.: Energoatomizdat, 331p; Fomin, N.I., Zatulovskaya, L.M., Electric furnaces and induction heating (1979) Metallurgy, , Moscow
Publisher Institute of Electrical and Electronics Engineers Inc.
Conference name 19th International Symposium on Electrical Apparatus and Technologies, SIELA 2016
Conference date 29 May 2016 through 1 June 2016
Conference code 123315
ISBN 9781467395229
Language of Original Document English
Abbreviated Source Title Int. Symp. Electr. Apparatus and Technol., SIELA
Source Scopus