[1]
D.R. Ganin, V.G. Druzhkov, A.A. Panychev, A.N. Shapovalov, E.A. Shevchenko, The utilization of the additions of the brown ironstone ores from the Novokievskoe deposit to manufacturing the sinter, Ferrous Metallurgy. Bulletin of Scientific, Technical and Economic Information. 10(1402) (2016) 27-35.
Google Scholar
[2]
D.R. Ganin, V.G. Druzhkov, A.A. Panychev, I.S. Bersenev, Agglomeration of iron ore materials adding brown iron ores, bentonite clays, serpentinite-magnesites as pulp during sinter mix pelletizing, in: Abstracts of 77th International Science and Technology Conference Actual Problems of Modern Science, Technology and Education,, Nosov Magnitogorsk State Technical University, Magnitogorsk, 2019, pp.83-84.
DOI: 10.4028/p-hi039w
Google Scholar
[3]
D.R. Ganin, Advances in Technological Productivity for Agglomeration of Iron Ore Raw Materials by Introducing Additives as Pulp During Sinter Mix Pelletizing, Dissertation in Support of Candidature for a Technical Degree, Magnitogorsk, (2019).
Google Scholar
[4]
D.R. Ganin, V.G. Druzhkov, A.A. Panychev, I.S. Bersenev, Microstructure and mineralogical composition of agglomerates in use of additives of brown ironstone ores, bentonite clays and serpentinite-magnesites, Chernye Metally. 5 (2018) 10-14.
Google Scholar
[5]
I.S. Bersenev, D.R. Ganin, V.G. Druzhkov, A.A. Panychev, Regularities of the concentration of chemical elements in the minerals of aglomerates from the magnetite concentrate of the Mikhailovskoe deposit, Chernye Metally. 12(1044) (2018) 15-19.
Google Scholar
[6]
D.R. Ganin, V.G. Druzhkov, I.S. Bersenev, A.A. Panychev, Experience of sinter phase composition control, in: Abstracts of 78th International Science and Technology Conference Actual Problems of Modern Science, Technology and Education,, Nosov Magnitogorsk State Technical University, Magnitogorsk, 2020, p.127.
DOI: 10.18503/1995-2732-2016-14-1-34-40
Google Scholar
[7]
V.M. Barabash, L.N. Braginsky, E.G. Kozlova, Application of devices for mixing highly concentrated suspensions, Theoretical Foundations of Chemical Technology. 24(1) (1990) 63-70.
Google Scholar
[8]
A.S. Timonin, Fundamentals of Design and Calculation of Chemical-technological and Environmental Protection Equipment: A Reference Book, N. Bochkarev's Publishing House, Kaluga, (2002).
Google Scholar
[9]
G.A. Roginsky, Dosing of Bulk Materials, Khimiya, Moscow, (1978).
Google Scholar
[10]
S.V. Karpushkin, Calculations and Selection of Mechanical Stirring Devices for Vertical Vessels, TSTU, Tambov, (2009).
Google Scholar
[11]
N. D. Lukashkin, K.S. Kokhan, A.M. Yakushev, Consulting and Calculation of Machines and Units of Metallurgical Plants, Akademkniga, Moscow, (2003).
Google Scholar
[12]
A.E. Genkin, Equipment for Chemical Plants, Higher School, Moscow, (1970).
Google Scholar
[13]
A.I. Tselikov, P.I. Polukhin, V.M. Grebennik et al., Machines and Units of Metallurgical Plants, Vol. 1, Metallurgiya, Moscow, (1976).
Google Scholar
[14]
A.M. Grigoriev, Screw Conveyors, Mashinostroenie, Moscow, (1972).
Google Scholar
[15]
A.V. Malygin. V.A. Maltsev, M.G. Viduetskiy, Ore Preparation Processes in Smelting Production, AMK Day RA, LLC, Ekaterinburg, (2016).
Google Scholar
[16]
A.S. Nazemtsev, D.E. Rybalchenko, Pneumatic and Hydraulic Drives and Systems. Part 2. Hydraulic Drives and Systems. The Basics. Tutorial, FORUM, Moscow, (2007).
Google Scholar
[17]
S.G. German-Galkin, Computer Modeling of Semiconductor Systems in MATLAB 6.0: Textbook, CORONA Print, Sankt-Petersburg, (2001).
Google Scholar
[18]
G.G. Sokolovsky, AC Electric Drives with Frequency Control, Academy, Moscow, (2006).
Google Scholar
[19]
Yu.M. Kelim, Typical Diagrams of Automatic Control Systems, FORUM; INFRA-M, Moscow, (2002).
Google Scholar
[20]
B.I. Kopylov, Modern Control Systems, Laboratory of Basic Knowledge, Moscow, (2002).
Google Scholar