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Dynamic modelling on the confined crystallization of mono-sized cubic particles under mechanical vibration

机译:机械振动下单尺寸立方体粒子狭窄结晶的动态建模

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The dynamic crystallization of cubic granular particles under three-dimensional mechanical vibration is numerically investigated by the discrete element method. The effects of operational conditions (vibration, container shape and system size) and particle properties (gravity and friction) on the formation of crystals and defects are discussed. The results show that the formation and growth of clusters with face-to-face aligned cubic particles can be easily realized under vibrations. Especially, a single crystal with both translational and orientational ordering can be reproduced in a rectangular container under appropriate vibrations. It is also found that the gravitational effect is beneficial for the ordering of a packing; the ordering of frictional particles can be improved significantly with an enlarged gravitational acceleration. The flat walls of a rectangular container facilitate the formation of orderly layered structures. The curved walls of a cylindrical container contribute to the formation of ring-like structures, whereas they also cause distortions and defects in the packing centers. Finally, it is shown that the crystallization of inelastic particles is basically accomplished by the pursuit of a better mechanical stability of the system, with decreasing kinetic and potential energies.
机译:通过离散的元件法在数值研究三维机械振动下立方粒状颗粒的动态结晶。讨论了操作条件(振动,容器形状和系统尺寸)和颗粒性质(重力和摩擦)在形成晶体和缺陷的影响。结果表明,在振动下,可以容易地实现具有面对面对齐的立方体颗粒的簇的形成和生长。特别地,可以在适当的振动下在矩形容器中再现具有平移和方位排序的单晶。还发现重力效应有利于包装的排序;通过扩大的重力加速度可以显着提高摩擦粒子的排序。矩形容器的扁平壁有助于形成有序层状结构。圆柱形容器的弯曲壁有助于形成环状结构,而它们也会引起包装中心的扭曲和缺陷。最后,示出了非弹性粒子的结晶基本通过追求系统的更好的机械稳定性而完成,随着动力学和潜在的能量而降低。

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