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Tytuł artykułu

Grinding kinetics of granite considering morphology and physical properties of grains

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article presents the results of studies on the kinetics of grinding of granite taking into consideration the morphology and mechanical properties of particular size fractions of the feed. The study was conducted in a mill on a semi-technical scale. Milling was carried out periodically using several sets of grinding media. The output fraction of the ground material was of size 3-5 mm. The granulometric analysis of the raw material was carried out in a multiple manner. The granulometric composition of milling product was analyzed every 30 minutes. Simultaneously, ground material was subjected to an analysis of the shape of grains and microscopic analysis of morphology and chemical composition. Strength tests of grains were performed applying selected fractions of particle size ranges. The change of particle breakage rate function Si, for selected particles size ranges, was described with the Austin-Gardner expression. The influence of destructive force on kinetics of grinding was defined.
Rocznik
Strony
149--158
Opis fizyczny
Bibliogr. 12 poz.
Twórcy
  • Faculty of Process and Environmental Engineering, Technical University of Lodz, Wolczanska 213, 90-924 Lodz, tomasz.olejnik@p.lodz.pl
Bibliografia
  • 1. BLUMENAUER H., PUSCH G., 1981, Technischc Bruchmechanik. VEB Deutscher Verlag fiir Grundstoffindustrie, Leipzig.
  • 2. CHAPPELL, B.W. and WHITE, A.J.R., 2001, Two contrasting granite types: 25 years later. Australian Journal of Earth Sciences 48,489 499
  • 3. COLE D. M.. PETERS J. F., 2007, A physically based approach to granular media mechanics: grain-scale experiments, initial results and implications to numerical modeling. Granular Matter 9, 309 321.
  • 4. GEORGALLI G. A., REUTER M. A., 2008, A particle packing algorithm for packed beds with size distribution, Granular Matter 10: 257-262
  • 5. HORNGA J.-H., WEI C.-C, TSAI H.-J., SHINA B.C.. 2009. A study of surface friction and particlefriction between rough surfaces. Wear 267, 1257-1263.
  • 6. LYNCH A.J., 1974, Mineral crushing and grinding circuits, Oxford, New York.
  • 7. MORT P.R.. 2003, Proceedings of the 4th International Conference for conveying and handling of paniculate solids 2, 12.98- 12.104, Budapest, 27-30.05.2003.
  • 8. MOSTAFA M.E.. 2003, General rock failure criterion, Mining Technology, (Trans. Inst. Min. Metall A.), A68, 112, April 2003.
  • 9. OLEJNIK T.P., 2009, Kinetics of Grinding of the Raw Materials Considering of the Compression Strength of Grains, Proceedings of CHoPS+ICBMH, 166 169. Brisbane.
  • 10. OLEJNIK T.P., 2010, Milling rate of chosen mineral materials in a ball mill under changing apparatus-process conditions", Proceedings of Comminution'10, CD, 1-11, Cape Town.
  • 11. SHIPWAY P.H.. HUTCHINGS I.M., 1993, Fracture of brittle spheres under compression and impact loading, II Results for lead-glass and saphire spheres, Phil. Magaz. A, 67, 1389- 1404.
  • 12. Z1NGG T., 1935, Beitrag zur Schottcranalysc. Mineralogischc und Pctrologische Mitteilungen 15, 39-140.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT2-0003-0067
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