AustinL. G., KlimpelR. R. and LuckieP. T. Process engineering of size reduction: ball milling (New York: Society of Mining Engineers of AIME, 1984).
2.
McIvorR. E. Effects of speed and liner configuration on ball mill performance. Min. Engng, N. Y., June, 1983, 617–20.
3.
SastriS. R. S. and RaoK. K. Simple empirical equations for pre-diction of mill power draw. Trans. Instn Min. Metall. (Sect. C: Mineral Process. Extr. Metall.), 106, 1997, C91–4.
4.
MorrellS. Power draw of wet tumbling mills and its relationship to charge dynamics Part 1: a continuum approach to mathematical modelling of mill power draw. Trans. Instn Min. Metall. (Sect. C: Mineral Process. Extr. Metall.), 105, 1996, C43–53.
5.
MorrellS. Power draw of wet tumbling mills and its relationship to charge dynamics—Part 2: an empirical approach to modelling of mill power draw. Trans. Instn Min. Metall. (Sect. C: Mineral Process. Extr. Metall.), 105, 1996, C54–62.
6.
GuptaV. K. Mill speed control for more efficient grinding. C163 Paper presented to 17th Canadian Mineral Processors Conference, Ottawa, January, 1985.
7.
HerbstJ. A. and FuerstenauD. W. Influence of mill speed andball loading on the parameters of the batch grinding equation. Trans. SME—AIME, 252, 1972, 170–6.
8.
LiddellK. S. and MoysM. H. The effects of mill speed and fill-ing on the behaviour of the load in a rotary grinding mill. y S. Afr. Inst. Min. Metall., 88, 2, 1988, 49–57.
9.
MoysM. H. and SkorupaJ. Measurement of the radial and tangential forces exerted by the load on a liner in a ball mill, As a function of load volume and mill speed. Int. J. Mineral Process., 37, 1993, 239–56.
10.
HerbstJ. A., RobertsonK. and RajamaniK. Mill speed as a manipulated variable for ball mill control. IFAC Automation in min-ing, mineral and metal processing (Helsinki: IFAC, 1983), 153–60.
11.
LevesqueR.Sidbec—Normines Inc. et la production de boulettes a basse teneur en silice et de boulettes a hauts-fourneaux Port-Cartier. CIM Bull., 72, June, 1979, 129–36.
12.
LaplanteA. R. and RedstoneJ. La modelisation du broyage des concentres d'hematite a Sidbec—Normines. CIM Bull., 76, December, 1983, 67–73.
13.
MeloyT. P. and WilliamsM. C. A new comminution model to replace the PBM communition methodology. InKawatraK ed. Comminution—theory and practice (Littleton, Colorado: SME, 1992), 171–80.
14.
HerbstJ. A. Response to the population balance model chal-lenge. InKawatraK.ed. Comminution practices (Littleton, Colorado: SME, 1997), 47–53.
15.
KellyE. G. and SpottiswoodD. J. The breakage function—what is it really? MineralsEngineering, 3, no. 5, 1990, 405–15.
16.
GuptaV. K., HodouinD. and SpringR. Kinetic ball mill model: parameter estimation. Chapter 7.2 of The SPOC manual (Ottawa: Energy, Mines and Resources Canada, 1985).
17.
BazinC. and HodouinD. Processing assays of size fractions from sieve and cyclosizer analyses. Minerals Engineering, 9, 7, 1995, 753–63.