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Compaction force in a confined granular column
D Arroyo-Cetto1, G Pulos, R Zenit
1Instituto de Investigaciones en Materiales, Universidad Nacional Autónoma de México, Coyoacán, México Distrito Federal 04510, Mexico.
This study investigated the force needed to move granular columns in cylinders. Results show force increases with column height and, unexpectedly, with displacement velocity, indicating rate-dependent behavior in dense granular flows.
Area of Science:
- Physics
- Materials Science
- Fluid Dynamics
Background:
- Granular materials exhibit complex behaviors under confinement.
- Janssen's theory describes pressure in granular materials but may not capture all phenomena.
Purpose of the Study:
- To experimentally determine the force required to push a confined granular column.
- To investigate the influence of column height, sphere diameter, cylinder diameter, and displacement velocity on this force.
- To identify rate-dependent behaviors in dense granular flows.
Main Methods:
- Utilized a material testing system machine for simultaneous force and displacement measurements.
- Conducted experiments with varying sphere diameters, cylinder diameters, and piston displacement velocities.
- Focused on granular columns confined within a cylinder.
Main Results:
- The force required to displace the granular column increased significantly with column height, aligning with Janssen's theory.
- An unexpected finding was that the force also increased with the piston displacement velocity.
- Observed a transition to rate-dependent behavior in dense granular flows.
Conclusions:
- Granular column displacement force is dependent on column height and, notably, on the rate of displacement.
- The observed velocity dependence suggests a shift towards rate-dependent phenomena in dense granular flow regimes.
- These findings contribute to a deeper understanding of granular material mechanics and flow dynamics.
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