论文标题
大规模摩擦无摩擦干扰和幂律粒度分布
Large-scale frictionless jamming with power-law particle size distributions
论文作者
论文摘要
由于大量的计算费用,大小比大于1:10的尺寸分散球的堵塞包装的离散元素方法模拟仍然难以捉摸,这限制了模拟与具有较大尺寸分散剂的现实世界粒状材料之间的对应关系。援引最近开发的邻居binning算法,我们生成了机械稳定的无摩擦球填充包装,其幂律尺寸分布最多包含近400万个颗粒,尺寸比最高为1:100。通过系统地改变潜在功率定律的宽度和指数,我们分析了粒度分布在堵塞包装结构中的作用。对于平衡大型/中间和小颗粒粒子触点的相对丰度的尺寸分布,获得了最密集的包装。尽管响尾蛇颗粒的比例和平均配位数在很大程度上取决于尺寸分布,但在所有情况下,非手架颗粒的平均配位无摩擦等静态值为六。参与负载网络的非手架粒子的尺寸分布不依赖于低稳定指数功率定律的临界粒径超出临界粒径的宽度。这表明只有大小大于临界粒径的颗粒有助于机械稳定性。但是,对于高磁性指数功率定律,所有粒径都参与包装的机械稳定性。
Due to significant computational expense, discrete element method simulations of jammed packings of size-dispersed spheres with size ratios greater than 1:10 have remained elusive, limiting the correspondence between simulations and real-world granular materials with large size dispersity. Invoking a recently developed neighbor binning algorithm, we generate mechanically-stable jammed packings of frictionless spheres with power-law size distributions containing up to nearly four million particles with size ratios up to 1:100. By systematically varying the width and exponent of the underlying power laws, we analyze the role of particle size distributions on the structure of jammed packings. The densest packings are obtained for size distributions that balance the relative abundance of large-large/intermediate and small-small particle contacts. Although the proportion of rattler particles and mean coordination number strongly depend on the size distribution, the mean coordination of non-rattler particles attains the frictionless isostatic value of six in all cases. The size distribution of non-rattler particles that participate in the load-bearing network exhibits no dependence on the width of the total particle size distribution beyond a critical particle size for low-magnitude exponent power laws. This signifies that only particles with sizes greater than the critical particle size contribute to the mechanical stability. However, for high-magnitude exponent power laws, all particle sizes participate in the mechanical stability of the packing.