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Microscopic Origins of Shear Strength in Packings Composed of Elongated Particles

机译:伸长颗粒组成的填料中剪切强度的微观成因

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摘要

We investigate the rheology, force transmission and texture of granular materials composed of elongated particles by means of contact dynamics simulations. The particles have a rounded-cap rectangular (RCR) shape described by a single elongation parameter varying from 0 for a circular particle to 1 for an infinitely thin or long particle. We study the quasi-static behavior, structural and force anisotropies as a function of the elongation parameter for packings submitted to biaxial compression. The shear strength is found to increase linearly with this parameter whereas the solid fraction both at the initial isotropic state and in the critical state is nonmonotonous. We show that for these elongated particles a harmonic decomposition of the stress tensor provides a fairly good approximation of the internal state. Our data suggest that the increase of shear strength with reflects both enhanced friction mobilization and anisotropic particle orientation as the elongation of the particles increases.
机译:我们通过接触动力学模拟研究由细长颗粒组成的粒状材料的流变,力传递和织构。颗粒具有圆帽矩形(RCR)形状,由单个伸长率参数描述,从圆形颗粒的0到无限细或长颗粒的1改变。我们研究准静态行为,结构和力的各向异性作为填料的双轴压缩伸长率参数的函数。发现抗剪强度随该参数线性增加,而在初始各向同性状态和临界状态下的固体分数都不单调。我们表明,对于这些细长的粒子,应力张量的谐波分解提供了内部状态的良好近似。我们的数据表明,随着颗粒伸长率的增加,剪切强度的增加反映了摩擦动员和各向异性颗粒取向的增强。

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