1991Journal of the Society of Powder Technology JapanOpen access

The Grinding Equilibrium Size of In-Water Grinding of Silica Sand by a Planetary Ball Mill.

Toyokazu Yokoyama, Yoshiki TANIYAMA, Genji Jimbo, Qian-Qiu Zhao

Open full text 20 citations

Abstract

The limit of in-water grinding of silica sand by a planetary ball mill, which gives a much higher grinding rate than tumbling ball mills, was investigated from the viewpoint of mechanical grinding conditions. The grinding limit and subsequent negative grinding were confirmed in the in-water grinding. To do this, the product fineness was evaluated on the basis of size analysis by the laser scattering-diffraction method. As a result of a series of experiments, it was found that the grinding equilibrium size, defined as the minimum particle size determined by the size analysis, decreased as the ball size, ball density or mill's rotation was reduced. The grinding equilibrium size was well correlated with the maximum force exerting on a single ball in the mill pot within the experimental range.

Open-access reader

About this research paper

What this paper is about

The limit of in-water grinding of silica sand by a planetary ball mill, which gives a much higher grinding rate than tumbling ball mills, was investigated from the viewpoint of mechanical grinding conditions. The grinding limit and subsequent negative grinding were confirmed in the in-water grinding. To do this, the product fineness was evaluated on the basis of size analysis by the laser scattering-diffraction method. As a result of a series of experiments, it was found that the grinding equilibrium size, defined as the minimum particle size determined by the size analysis, decreased as the ball size, ball density or mill's rotation was reduced. The grinding equilibrium size was well correlated with the maximum force exerting on a single ball in the mill pot within the experimental range.

Why it matters

OpenAlex reports 20 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The limit of in-water grinding of silica sand by a planetary ball mill, which gives a much higher grinding rate than tumbling ball mills, was investigated from the viewpoint of mechanical grinding conditions. The grinding limit and subsequent negative grinding were confirmed in the in-water grinding. To do this, the product fineness was evaluated on the basis of size analysis by the laser scattering-diffraction method. As a result of a series of experiments, it was found that the grinding equilibrium size, defined as the minimum particle size determined by the size analysis, decreased as the ball size, ball density or mill's rotation was reduced. The grinding equilibrium size was well correlated with the maximum force exerting on a single ball in the mill pot within the experimental range.

Key concepts: Grinding, Fineness, Ball mill, Mill, Ball (mathematics), Particle size, Materials science, Metallurgy

Related papers

Back to paper searchBrowse research topicsOriginal source
The Grinding Equilibrium Size of In-Water Grinding of Silica Sand by a Planetary Ball Mill. — Research Paper | ScholarLens