CORRELATION OF POWDER CHARACTERISTICS OF TALC DURING PLANETARY BALL-MILLING WITH THE IMPACT ENERGY OF THE BALLS SIMULATED BY THE PARTICLE ELEMENT METHOD

Authors
Citation
J. Kano et F. Saito, CORRELATION OF POWDER CHARACTERISTICS OF TALC DURING PLANETARY BALL-MILLING WITH THE IMPACT ENERGY OF THE BALLS SIMULATED BY THE PARTICLE ELEMENT METHOD, Powder technology, 98(2), 1998, pp. 166-170
Citations number
6
Categorie Soggetti
Engineering, Chemical
Journal title
ISSN journal
00325910
Volume
98
Issue
2
Year of publication
1998
Pages
166 - 170
Database
ISI
SICI code
0032-5910(1998)98:2<166:COPCOT>2.0.ZU;2-K
Abstract
Room temperature grinding of talc powder was conducted by a planetary ball mill using media balls of different sizes. The grinding behavior of the talc sample was investigated by X-ray diffraction (XRD) and par ticle size distribution analyses. The motion of the balls in the mill with talc powder was simulated by the Particle Element Method (PEM) un der the same condition as that of the talc grinding. Within the size r eduction range of the talc powder, the 50% passing particle size, D-50 , of the ground product is expressed by the equation, D-50,D-t/ D-50.0 = (1 - D-50.1/D-50.0)exp( - K(p)t) + D-50.1/D-50.0, when K-P is the r ate constant and subscripts, 0, t and 1 denote the initial and arbitra ry times, and the grinding limit. The amorphization process of talc po wder during milling is expressed by (I/I-o) = exp(K(S)t), where I deno tes the representative peak intensity of the XRD pattern of the talc s ample ground for arbitrary time, and subscript 0 the initial stage and K-S the rate constant of the amorphization. Both K-P and K-S tend to increase with a decrease in the ball diameter, d, when the mill speed is high. A similar trend can be seen in the relation between the impac t energy of balls, E-i, and d. Therefore, both the size reduction and amorphization rates of talc correlate with E-i. (C) 1998 Elsevier Scie nce S.A. All rights reserved.