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Grinding Kinetics of Calcite, Pyrophyllite and Talc During Stirred Ball Milling - Consideration of Selection Function  

Choi, Hee-Kyu (School of Nano & Advanced Materials Engineering, Changwon National University)
Kim, Seong-Soo (Interdisciplinary Program in Powder Technology Graduate School, Pusan National University)
Hwang, Jin-Yeon (Interdisciplinary Program in Powder Technology Graduate School, Pusan National University)
Publication Information
Journal of the Mineralogical Society of Korea / v.20, no.2, 2007 , pp. 135-145 More about this Journal
Abstract
The needs for the ultra fine particles have been increased in preparation field of raw powders such as fine ceramics and high functional products. In this study, a series of wet grinding experiments were carried out on inorganic powders such as calcite, pyrophyllite and talc by a stirred ball mill. The particle size distribution of ground products of each test material fur a given grinding time was found to be expressed by the grinding rate (selection function) which was obtained from the grinding kinetics analysis. The median diameter decreased from 6.49 to $0.47{\mu}m$ in calcite, and decreased from 3.91 to $1.14{\mu}m$ in pyrophyllite. However, in talc, median diameter was decreased a little bit from 10.30 to $6.67{\mu}m$. The grinding rate changing on calcite and pyriphyllite were similar at the same conditions. However, in the case of talc, it was observed that the grinding rate was not increased compared to other samples.
Keywords
fine grinding; stirred ball mill; inorganic powder; grinding kinetics; selection function;
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