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Evolution of fragment size distributions from the crushing of granular materials

机译:粒状碎片尺寸分布的演变

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摘要

We study fragment size distributions after crushing single and many particles under uniaxial compression inside a cylindrical container by means of numerical simulations. Under the assumption that breaking goes through the bulk of the particle we obtain the size distributions of fragments for both cases after large displacements. For the single-particle crushing, this fragmentation mechanism produces a log-normal size distribution, which deviates from the power-law distribution of fragment sizes for the packed bed. We show that as the breaking process evolves, a power-law dependency on the displacement is present for the single grain, while for the many-grains system, the distribution converges to a steady state. We further investigate the force networks and the average coordination number as a function of the particle size, which gives information about the origin of the power-law distributions for the granular assembly under uniaxial compression.
机译:通过数值模拟在圆柱形容器内的单轴压缩下粉碎单轴压缩后,研究片段尺寸分布。 在假设中,断裂通过大量粒子的粒子,我们在大型位移后获得两种情况的碎片的尺寸分布。 对于单粒子破碎,这种碎片机制产生了对数正常尺寸分布,其偏离填充床的片段尺寸的动力法分布。 我们表明,随着破坏过程的演变,对单颗粒存在对位移的依赖性,而对于许多谷物系统,分布会收敛到稳态。 我们进一步研究了力网络和平均协调数量作为粒度的函数,这提供了有关在单轴压缩下颗粒组件的电力律分布起源的信息。

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