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This paper reports on an extensive experimental campaign aimed at studying the influence of interparticle forces on the fluidization behaviour of fine group A powders by changing the size distribution of the fine sub-cuts (particles below 45μm) and with increasing temperature. The fluidization behaviour of an alumina powder was investigated at temperatures ranging from ambient up to 400∘C and by adding...
This paper reports some of the results obtained from an extensive experimental campaign aimed at studying the influence on fluidization of changing the size distribution of the fine sub-cuts (particles below 45 μm) of Group A powders with increasing temperature. The fluidization behaviour of an alumina powder was monitored at temperatures ranging from ambient to 400 °C and by adding to the material...
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