SciELO - Scientific Electronic Library Online

 
vol.42 issue2Advances in nonlinear stress analysis of a steam cooled gas turbine bladeA simple 2d pore-scale network model for the transport of water vapor and oxygen in polymeric films author indexsubject indexarticles search
Home Pagealphabetic serial listing  

Services on Demand

Journal

Article

Indicators

  • Have no cited articlesCited by SciELO

Related links

  • Have no similar articlesSimilars in SciELO

Share


Latin American applied research

Print version ISSN 0327-0793

Abstract

SUDARIO, F. E. P.  and  LU, J. A. M.. Modelling of binary mixture comminution. Lat. Am. appl. res. [online]. 2012, vol.42, n.2, pp.177-184. ISSN 0327-0793.

This paper treats on grindability differences of mineral mixtures to achieve a preliminary selective particle size contrast by comminution in order to improve further sorting operation. Quartz and calcite had been chosen as example of binary system. The theoretical basis for this work was inspired by the optimization study carried out by Ray and Szekely (1973), through an algebraic model based on evolution of log-normal distribution of particle size during comminution. On the other hand, the present work has described grindability differences through the classical Rosin-Rammler size distribution. The study of the evaluation of binary mixture differences was realized by sieving analyses and the estimation of Rosin-Rammler sharpness and median diameter. An objective function was conceived stressing the relationship between the expended energy in the grinding process and the optimum residence time. It is possible to use the results as a background for grinding optimization system, since that the penalty function inside objective function can be adequately calibrated as far as technical and economic impacts on further sorting separations are concerned.

Keywords : Grindability; Granular Media; Rosin-Rammler; Unit Operations.

        · text in English

 

Creative Commons License All the contents of this journal, except where otherwise noted, is licensed under a Creative Commons Attribution License