Measurement Of Impact Forces In Ball Mills (3203c5bc-b8f1-4703-9e3b-281b13e62f34)

The American Institute of Mining, Metallurgical, and Petroleum Engineers
David J. Dunn Richard G. Martin
Organization:
The American Institute of Mining, Metallurgical, and Petroleum Engineers
Pages:
5
File Size:
429 KB
Publication Date:
Jan 1, 1979

Abstract

Of many physical parameters critical to design of grinding processes, impact of grinding media is among the most difficult to measure or predict. Yet impact of falling grinding balls, pebbles, or rods accomplishes the fine grinding essential to metallurgical recovery of most important minerals. Unfortunately, the same impacts that break ore fragments deform or crack grinding mill liners. A project was undertaken at Climax Molybdenum Company to measure impact forces in operating ball mills so that they might be used to calculate stresses in liner materials and be correlated with service performance of mill liner alloys. Towards that end, a method of measuring impact forces on ball mill liners using an instrumented grinding ball has been developed. Preliminary tests show that impact forces and contact stresses imposed on bare mill liners are quite high but are greatly reduced by cushioning when coarse ore particles are crushed between balls and liners. Compressive and shear stresses induced in liners not protected by coarse ore are so severe that deformation or minute subsurface cracking are inevitable in all but the small production grinding mills, regardless of mill liner alloy strength or hardness.
Citation

APA: David J. Dunn Richard G. Martin  (1979)  Measurement Of Impact Forces In Ball Mills (3203c5bc-b8f1-4703-9e3b-281b13e62f34)

MLA: David J. Dunn Richard G. Martin Measurement Of Impact Forces In Ball Mills (3203c5bc-b8f1-4703-9e3b-281b13e62f34). The American Institute of Mining, Metallurgical, and Petroleum Engineers, 1979.

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