[1]
Mamdouh Omran, Timo Fabritius. Effect of steelmaking dust characteristics on suitable recycling process determining: Ferrochrome converter (CRC) and electric arc furnace (EAF) dusts, Powder Technology (2017) 47-60.
DOI: 10.1016/j.powtec.2016.11.049
Google Scholar
[2]
Amal Tita, Diana Campos, Véronique Sadtler, Philippe Marchal, Véronique Falk. Influence of the binder on the mechanical strength of compacts prepared by modified wet compression method, Powder Technology 230 (2012) 86-92.
DOI: 10.1016/j.powtec.2012.06.058
Google Scholar
[3]
P. García-Triñanes, M. Morgeneyer, J.J. Casares, M. Bao. Use of organic byproducts as binders in the roll compaction of caustic magnesia, Powder Technology 226 (2012) 173-179.
DOI: 10.1016/j.powtec.2012.04.039
Google Scholar
[4]
Yu.N. Loginov, S.P. Burkin, A. N. Babailov, L.I. Polyansky, Mechanics of Roll Briquetting of Loos Materials, AMB, Ekaterinburg, (2011).
Google Scholar
[5]
A.P. Nikiforov А.P., S.A. Nikiforov С.А., M.V. Nikiforova et al, RU patent 2272082 (2006).
Google Scholar
[6]
V.I. Babanin, А.Y. Yeremin, С.Y. Kozlova et al, RU patent 2203334 (2003).
Google Scholar
[7]
V.I. Berdnikov, I.A. Kopyrin, M.I. Voskoboynik et al, USSR patent 1786151 (1993).
Google Scholar
[8]
L.N. Makarov, D.V. Shaburov, V.I. Antonov et al, RU patent 2398029 (2010).
Google Scholar
[9]
V.I. Gerner, V.V. Obrezkov, I.V. Malkov et al, RU patent 2156814 (2000).
Google Scholar
[10]
S.S. Ozerov, А.B. Portnov, L.S. Tsemehman, Briquetting fine-grained materials, Tsvetnye Metally 7 (2014) 26-31.
Google Scholar
[11]
Y.N. Loginov, S.P. Bourkine, N.A. Babailov, Cinematics and volume deformations during roll-press briquetting, Journal of Materials Processing Technology 118. Iss. 1-3 (2001) 151-157.
DOI: 10.1016/s0924-0136(01)00880-9
Google Scholar
[12]
O. Simon, K. Saleh, G.J. Bindhumadhavan, M.Adams, J.P.K. Seville, Handbook of Powder Technology, Elsevier, (2007).
Google Scholar
[13]
V.I. Babanin, A.Ya.Eremin, G.N. Bezdezhsky, Development and implementation of new technology for briquetting of fine fraction material with liquid glass. Part 1, Metallurg 1 (2007) 68-71.
Google Scholar
[14]
V.I. Babanin, A.Ya.Eremin, G.N. Bezdezhsky, Development and implementation of new technology for briquetting of fine fraction material with liquid glass. Part 2, Metallurg 2 (2007) 71-76.
Google Scholar
[15]
R.K. Patrin, V.M. Sizyakov, V.Yu. Bazhin, Prospects of pyrometallurgical processing of technogenic waste of aluminum production, Izvestiya Vuzov Tsvetnaya Metallurgiya 6 (2013) 61-63.
DOI: 10.17073/0021-3438-2013-6-61-63
Google Scholar
[16]
N.A. Babailov, L.I. Polyanskii, Yu.N. Loginov, Briquetting Metallurgical Lime Screenings and Parameters Making it Possible to Improve Process Efficiency Metallurgist 60 (2016) 1-5.
DOI: 10.1007/s11015-016-0334-3
Google Scholar
[17]
Yu.N. Loginov, N.A. Babailov, L.I. Polyanskii, Effect of the precompaction pressure on the density distribution in a metallurgical briquette during roller pressing, Metallurgist. 61, Iss.9-10 (2018) 849-852.
DOI: 10.1007/s11015-018-0574-5
Google Scholar
[18]
N.A. Babailov, Yu.N.Loginov, L.I. Polyanskiy, D.N. Pervukhina, Roll Briquetting for Aluminum Wire Utilization Metallurgist 62, Iss.7-8 (2018) 717-722.
DOI: 10.1007/s11015-018-0713-z
Google Scholar
[19]
А.V. Vetoshkin, L.I. Polianskiy, Valkovyj press dlya briketirovaniya sypuchih i plastichnyh materialov, RU patent 2197389 (2003).
Google Scholar
[20]
V.N. Maschenko, V.А. Kniss, V.А. Kobelev, A.S. Avdeev, L.I. Poliansky, Preparing nickel lateritic ores to smelting, UrО RAN, Ekaterinburg, (2005).
Google Scholar
[21]
L.I. Polyanskii, M.V. Kobelev, A.V. Vetoshkin, The equipment for the press compacting of the metallurgical lime screening, Novye ogneupory 3 (2014) 99-100.
Google Scholar
[22]
L.I. Polyanskii, M.V. Kobelev, A.V. Vetoshkin, The equipment for the press compacting of the metallurgical lime screening, Byulleten Chernaya metallurgiya 7 (2013) 68-70.
Google Scholar
[23]
Information on http://spidermash.ru/.
Google Scholar