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Discrete Element Method Simulation of the Restitutive Characteristics of a Steel Spherical Projectile from a Particulate Aggregation

机译:基于颗粒聚集体的钢球形弹丸恢复特性的离散元方法模拟

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摘要

The dynamic behavior of monodispersed particulate aggregation subjected to projectile impact at velocities less than 16 m/s is investigated numerically by the discrete element method (DEM). The particulate aggregation consists of mono-size nylon spheres arranged regularly and three-dimensionally in a rectangular parallelepiped container. A steel sphere vertically strikes a nylon sphere or several nylon spheres near the center in the top layer of aggregated particles. In particular, the effects of several impact conditions on the rebound velocity of the steel projectile are discussed in detail. As a result, it is found that the rebound velocity of the steel projectile depends upon the lateral gap between nylon spheres, the ratio of the radius of the steel projectile to the radius of nylon spheres and the impact position of the steel projectile.
机译:通过离散元方法(DEM)数值研究了单分散颗粒聚集体在小于16 m / s的速度下受到弹丸冲击的动力学行为。颗粒状聚集体由规则大小和三维排列在矩形平行六面体容器中的单色尼龙球组成。钢球在聚集颗粒顶层的中心附近垂直撞击尼龙球或几个尼龙球。特别是,详细讨论了几种冲击条件对弹丸回弹速度的影响。结果,发现钢弹的回弹速度取决于尼龙球之间的横向间隙,钢弹的半径与尼龙球的半径之比以及钢弹的撞击位置。

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