Majmudar T S, Behringer R P
Department of Physics & Center for Nonlinear and Complex Systems, Duke University, Durham, North Carolina, 27708-0305, USA.
Nature. 2005 Jun 23;435(7045):1079-82. doi: 10.1038/nature03805.
Interparticle forces in granular media form an inhomogeneous distribution of filamentary force chains. Understanding such forces and their spatial correlations, specifically in response to forces at the system boundaries, represents a fundamental goal of granular mechanics. The problem is of relevance to civil engineering, geophysics and physics, being important for the understanding of jamming, shear-induced yielding and mechanical response. Here we report measurements of the normal and tangential grain-scale forces inside a two-dimensional system of photoelastic disks that are subject to pure shear and isotropic compression. Various statistical measures show the underlying differences between these two stress states. These differences appear in the distributions of normal forces (which are more rounded for compression than shear), although not in the distributions of tangential forces (which are exponential in both cases). Sheared systems show anisotropy in the distributions of both the contact network and the contact forces. Anisotropy also occurs in the spatial correlations of forces, which provide a quantitative replacement for the idea of force chains. Sheared systems have long-range correlations in the direction of force chains, whereas isotropically compressed systems have short-range correlations regardless of the direction.
颗粒介质中的颗粒间力形成了丝状力链的非均匀分布。理解这些力及其空间相关性,特别是在系统边界受力时的情况,是颗粒力学的一个基本目标。这个问题与土木工程、地球物理学和物理学相关,对于理解堵塞、剪切诱导屈服和力学响应很重要。在这里,我们报告了二维光弹圆盘系统内部法向和切向颗粒尺度力的测量结果,该系统受到纯剪切和各向同性压缩。各种统计量显示了这两种应力状态之间的潜在差异。这些差异出现在法向力的分布中(压缩时比剪切时更呈圆形),尽管在切向力的分布中没有出现(两种情况下切向力分布均为指数形式)。受剪切的系统在接触网络和接触力的分布中表现出各向异性。各向异性也出现在力的空间相关性中,这为用力链的概念提供了定量替代。受剪切的系统在力链方向上具有长程相关性,而各向同性压缩的系统无论方向如何都具有短程相关性。