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首页> 外文期刊>The European physical journal, E. Soft matter >About the influence of friction and polydispersity on the jamming behavior of bead assemblies
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About the influence of friction and polydispersity on the jamming behavior of bead assemblies

机译:关于摩擦和多分散性对胎圈组件卡塞行为的影响

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We study the jamming of bead assemblies placed in a cylindrical container whose bottom is pierced with a circular hole. Their jamming behavior is quantified here by the median jamming diameter, that is the diameter of the hole for which the jamming probability is 0.5. Median jamming diameters of monodisperse assemblies are obtained numerically using the Distinct Element Method and experimentally with steel beads. We obtain good agreement between numerical and experimental results. The influence of friction is then investigated. In particular, the formation of concentric bead rings is observed for low frictions. We identify this phenomenon as a boundary effect and study its influence on jamming. Relying on measures obtained from simulation runs, the median jamming diameter of bidisperse bead assemblies is finally found to depend only on the volume-average diameter of their constituting beads. We formulate this as a tentative law and validate it using bidisperse assemblies of steel beads.
机译:我们研究了放置在圆柱形容器中的珠子组件的堵塞情况,该容器的底部有一个圆孔。它们的堵塞行为在此通过中值堵塞直径来量化,即堵塞概率为0.5的孔的直径。单分散组件的中位干扰直径是使用离散元素法(Distinct Element Method)以数值方式获得的,并通过钢珠实验得到。我们在数值和实验结果之间取得了很好的一致性。然后研究摩擦的影响。尤其是,观察到同心的胎圈环的摩擦较小。我们将此现象识别为边界效应,并研究其对干扰的影响。依靠从模拟运行中获得的测量结果,最终发现双分散珠子组件的中值干扰直径仅取决于其组成珠子的体积平均直径。我们将其表述为暂定律,并使用钢珠的双分散组件对其进行验证。

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