KINETICS OF GRINDING MINERAL RAW MATERIALS IN A BALL RUBBER LINED MILL

UDC 678.4.06:621

Authors:

V.I. Dyrda, D. Sc. (Tech.), Professor (IGTM NAS of Ukraine)

V.A. Kalashnikov, Director (Valsa-GTV Ltd.)

I.V. Hmel, Chief Enricher (Northern Mining and Processing Plant)

Ye.V. Kalgankov, Ph. D. Student (IGTM NAS of Ukraine)

Abstract.

The problem of grinding mineral raw materials in a ball rubber lined mill is considered. We consider the theory of Coulomb-Navier to calculate energy intensity of destruction of iron ore samples during the compression and shear deformations. It is shown that the ways and means in which the shear stresses are realized mainly are the most energy damage mechanism of iron ore.

Keywords:

ball mills, rubber linings, kinetics of grinding mineral raw materials, Coulomb-Navier’s theory, mathematical model of destruction of mineral raw materials

References:

  1.             Devis, E. (1932), “Thin crushing in ball mills”, in Devis, E. (ed.), Teoriya I praktika drobleniya I tonkogo izmelcheniya [The Theory and Practice of Crushing and Thin Crushing], Moscow, Russia, pp. 153-170.
  2.             Andreev, S.E., Petrov, V.A. and Zverevich V.V. (1980), Drobleniye, izmelchenie I grokhochenie poleznykh iskopayemikh [Crushing, Powdering and Screen Sizing of Mineral Resources], Nedra, Moscow, Russia.
  3.             Bogdanov, O.S. and Olevskiy V.A. (1982), Directory on enrichment of ores. Preparing processes, Nedra, Moscow, Russia.
  4.             Olevskiy, V.A. (1963), Razmolnoe oborudovanie obogatitelnykh fabryk [Grinding Equipment Concentrators], Gosdortekhizdat, Moscow, Russia.
  5.             Cherepanov, G.P. (1974), Mekhanika khrupkogo razrusheniya [Mechanics of Brittle Destruction], in Cherepanov, G.P. (ed.), Moscow, Russia.
  6.             Orowan, E. (1950), Proceedings on the Simposium on Fatigue and Fracture of Metals (Mitt), Wiley, New York, USA, pp. 139-167.
  7.             Dyrda V.I. and Zozulya R.P. (2013), Rezinovye futerovki tekhnologicheskikh mashin [Rubber Lining Technological Machines], Zhurfond, Dnepropetrovsk, Ukraine.

About the authors:

Dyrda Vitaly Illarionovich, Doctor of Technical Sciences (D. Sc.), Professor, Head of Department of Elastomeric Component Mechanics in Mining Machines, M.S. Polyakov Institute of Geotechnical Mechanics under the National Academy of Science of Ukraine (IGTM, NASU), Dnepropetrovsk, Ukraine, This email address is being protected from spambots. You need JavaScript enabled to view it.

Kalashnikov Vyacheslav Alekseevich, Director, Valsa-GTV Ltd., Belaya Tserkov, Ukraine

Hmel Irina Vitalyevna, Chief Enricher, Northern Mining and Processing Plant, Krivoy Rog, Ukraine

Kalgankov Yevgeniy Vasilyevich, Ph. D. Student in Department of Elastomeric Component Mechanics in Mining Machines, M.S. Polyakov Institute of Geotechnical Mechanics under the National Academy of Science of Ukraine (IGTM, NASU), Dnepropetrovsk, Ukraine

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