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Gravity-assisted segregation of granular materials of equal mass and size | Johnrob Bantang
; May Lim
; Christopher Monterola
; Caesar Saloma
; | Date: |
30 Sep 2002 | Journal: | Phys Rev E, 66 (4 Pt 1), 041306 | Abstract: | High-resolution segregation is demonstrated for elastic granular materials of the same mass and size. Each grain starts at a randomly selected position in the entrance facet of a cylinder, accelerates downwards due to gravity, and then bounces against a massive obstacle with a collision cross section that is proportional to the facet size. Bounce dynamics of the falling grain is a function of its relative elasticity with the obstacle. Subsequent collisions of the grain with the wall are assumed to be perfectly elastic. In the absence of interparticle collisions, grain focusing occurs at points along the cylinder axis. In the absence of rotation, focusing occurs regardless of the initial locations and (downward) velocities of the grains at the entrance facet. The focus location depends only on the coefficient of restitution of the falling particle and the obstacle size. Grains arrive at the focus in temporally localized bursts even if released simultaneously from the facet. Efficient segregation is, therefore, achieved without additional mechanical work (e.g., shaking, spinning) on the system configuration. | Source: | PubMed, pmid12443198 | Services: | Forum | Review | Favorites |
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