Slurry flow in mills with TCPL - An efficient pulp lifter for ag/sag mills


Autoria(s): Latchireddi, S.; Morrell, S.
Contribuinte(s)

S. Chandler

Data(s)

01/01/2006

Resumo

The difficulties associated with slurry transportation in autogenous (ag) and semi-autogenous (sag) grinding mills have become more apparent in recent years with the increasing trend to build larger diameter mills for grinding high tonnages. This is particularly noticeable when ag/sag mills are run in closed circuit with classifiers such as fine screens/cyclones. Extensive test work carried out on slurry removal mechanism in grate discharge mills (ag/sag) has shown that the conventional pulp lifters (radial and curved) have inherent drawbacks. They allow short-circuiting of the slurry from pulp lifters into the grinding chamber leading to slurry pool formation. Slurry pool absorbs part of the impact thus inhibiting the grinding process. Twin Chamber Pulp Lifter (TCPL) - an efficient design of pulp lifter developed by the authors overcomes the inherent drawbacks of the conventional pulp lifters. Extensive testing in both laboratory and pilot scale mills has shown that the TCPL completely blocks the flow-back process, thus allowing the mill to operate close to their design flow capacity. The TCPL performance is also found to be independent of variations in charge volume and grate design, whereas they significantly affect the performance of conventional pulp lifters (radial and curved). (c) 2006 Elsevier B.V. All rights reserved.

Identificador

http://espace.library.uq.edu.au/view/UQ:78877

Idioma(s)

eng

Publicador

Elsevier B V

Palavras-Chave #Engineering, Chemical #Mineralogy #Mining & Mineral Processing #Sag Milling #Comminution #Grinding #Autogenous #Grates #Pulp Lifters #C1 #290702 Mineral Processing #640300 First Stage Treatment of Ores and Minerals
Tipo

Journal Article