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From a macroscopic point of view, powder-consolidated nanocrystalline metals are similar to cohesive granular materials.
The constitutive equations are obtained from a statistical description of the mantel, regarded at the micro level as a cohesive granular assembly.
Conveying elements for cohesive granular flows were shown to perform similar to their use in polymer processing, as effective transport units with low specific mechanical energy input.
The flow characteristics of 13 cohesive granular materials were studied in the gravitational displacement Rheometer (GDR) and compared to flow in hoppers of varying angle and discharge diameter at fixed temperature and moisture conditions.
The lack of correlation between electrochemical performance and the macroscopic electronic conductivity of the pristine electrodes and the observation of repeated drops and jumps in capacity during cycling brought us to make an analogy between the silicon composite electrodes and cohesive granular materials such as fine soils media.
More specifically, a reliable method for detecting the time corresponding to the transformation of a mixture from a cohesive granular material into a granular paste (i.e. the so-called "transition time"), through use of a mixing power measurement, will be presented herein.
Similar(54)
A non-cohesive granular deposit is constructed by means of the Discrete Element Method (DEM) then cement is deposited on grains using three simple models.
A theory is given to predict the upward force, F, to lift an object buried at depth H in non-cohesive granular material.
A one-dimensional mathematical model is derived for the speed and attenuation of sound in a dense, non-cohesive uniform granular material.
The findings provide insights on establishing closures for the kinetic theory-based continuum models coupled with population balance to predict the behavior of cohesive particles in granular and multiphase flows, which is of particular interest to engineers handling fine/wet powders where interparticle cohesion is not negligible.
This formula represents a simple and well-known fact that the strength of a powder will increase with a decrease in the size of its constituents and explains why flour acts as a cohesive powder while granular sugar does not.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com