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Rebound of a confined granular material: combination of a bouncing ball and a granular damper

机译:密闭颗粒材料的回弹:弹跳球和颗粒阻尼器的组合

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摘要

A ball dropped over a solid surface bounces several times before a complete stop. The bouncing can be reduced by introducing a liquid into the ball; however, the first rebound remains largely unaffected by the fluid. Granular materials can also work as dampers. We investigated the rebound of a container partially filled with a given mass of grains mi. During the collision, the kinetic energy of the container is partially transferred to the grains, the rebound is damped, and the fast energy dissipation through inter-particle collisions and friction decreases the bouncing time dramatically. For grain-filled cylinders, a completely inelastic collision (zero rebound) is obtained when mi ≥ 1.5εomc, where εo and mc are the coefficient of restitution and mass of the empty container. For grain-filled spheres, the first rebound is almost undamped, but the second collision is completely inelastic if mi ≫ mc. These findings are potentially useful to design new granular damping systems.
机译:落在固体表面上的球在完全停止之前会反弹几次。可以通过将液体引入球中来减少反弹。但是,第一次反弹在很大程度上不受流体影响。粒状材料也可以用作阻尼器。我们调查了部分装满给定质量mi的容器的回弹。在碰撞过程中,容器的动能被部分转移到谷物上,回弹得到抑制,并且由于粒子间碰撞和摩擦而产生的快速能量耗散大大缩短了弹跳时间。对于充满谷物的圆柱体,当mi≥1.5εomc时,将获得完全无弹性的碰撞(零回弹),其中εo和mc是空容器的恢复系数和质量。对于颗粒填充的球体,第一次回弹几乎没有衰减,但是如果mi mc,则第二次碰撞完全没有弹性。这些发现对于设计新的颗粒阻尼系统可能有用。

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