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Discrete Element Simulation of Elastoplastic Shock Wave Propagation in Spherical Particles

机译:球形颗粒中弹塑性冲击波传播的离散元模拟

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Elastoplastic shock wave propagation in a one-dimensional assembly of spherical metal particles is presented by extending well-established quasistatic compaction models. The compaction process is modeled by a discrete element method while using elastic and plastic loading, elastic unloading, and adhesion at contacts with typical dynamic loading parameters. Of particular interest is to study the development of the elastoplastic shock wave, its propagation, and reflection during entire loading process. Simulation results yield information on contact behavior, velocity, and deformation of particles during dynamic loading. Effects of shock wave propagation on loading parameters are also discussed. The elastoplastic shock propagation in granular material has many practical applications including the high-velocity compaction of particulate material.
机译:通过扩展已建立的准静态压实模型,提出了球形金属颗粒一维组装中弹塑性冲击波的传播。压实过程是通过离散元素方法建模的,同时使用了弹性和塑性载荷,弹性卸载以及具有典型动态载荷参数的接触处的粘附力。特别感兴趣的是研究弹塑性冲击波在整个加载过程中的发展,传播和反射。仿真结果得出有关动态加载过程中粒子的接触行为,速度和变形的信息。还讨论了冲击波传播对载荷参数的影响。粒状材料中的弹塑性冲击传播具有许多实际应用,包括高速压实粒状材料。

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