Experimental Study in Order to Get the Spherical Particles of Silica Glass by Autogenous Grinding with a Stirred Mill

  • Kotake, Naoya (Department of Chemistry and Chemical Engineering, Yamagata University) ;
  • Toida, Naoyuki (Department of Chemistry and Chemical Engineering, Yamagata University) ;
  • Sato, Yosuke (Department of Chemistry and Chemical Engineering, Yamagata University) ;
  • Kanda, Yoshiteru (Department of Chemistry and Chemical Engineering, Yamagata University) ;
  • Tsubaki, Junichiro (Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University) ;
  • Ishikawa, Tsuyoshi (Mistui Mining, Co., LTD.) ;
  • Nagaoka, Osamu (Mistui Mining, Co., LTD.)
  • Published : 2001.10.01

Abstract

A demand for the aggregates is increasing in the field of civil and architectural industry and so on. In these industries, the particle size and shape of aggregates are important factors and especially spherical or rounded particles are desired. In Japan, waste glass is used as one of the aggregate materials for the pavement or the construction. In this study based on the frictional action of material on each other, an autogenous grinding of silica glass with a stirred mill were carried out in order to eliminate flakelike or squarish particles and get spherical or rounded ones for aggregate materials. The autogenous grinding experiments were conducted by applying loads to the particle layer of silica glass. The particle shape was evaluated by the shape index, N/T and the degree of circularity, Ψ$_{ci}$ . The unfractured particles (20~13mm) were evaluated by N/T and Ψ$_{ci}$ , and the products (finer than 10${\mu}{\textrm}{m}$) by Ψ$_{ci}$ . As a result, N/T of the unfractured particles decreased with an increase of grinding time. Ψ$_{ci}$ of the unfractured particles and the products increased with an increase of grinding time (; progress of grinding), and became almost constant in the long time grinding. These tendencies were not changed by the applied load on the particle layer, but the limit value of Ψ$_{ci}$ at the products were varied with the applied load.plied load.

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