Shen Tianqi, O'Hern Corey S, Shattuck M D
Department of Physics, Yale University, New Haven, Connecticut 06520-8120, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Jan;85(1 Pt 1):011308. doi: 10.1103/PhysRevE.85.011308. Epub 2012 Jan 27.
Typical quasistatic compression algorithms for generating jammed packings of purely repulsive, frictionless particles begin with dilute configurations and then apply successive compressions with the relaxation of the elastic energy allowed between each compression step. It is well known that during isotropic compression these systems undergo a first-order-like jamming transition at packing fraction φ(J) from an unjammed state with zero pressure and no force-bearing contacts to a jammed, rigid state with nonzero pressure, a percolating network of force-bearing contacts, and contact number z=2d, where d is the spatial dimension. Using computer simulations of two-dimensional systems with monodisperse and bidisperse particle size distributions, we investigate the second-order-like contact percolation transition, which precedes the jamming transition with φ(P)<φ(J) and signals the formation of a system-spanning cluster of non-force-bearing contacts between particles. By measuring the number of nonfloppy modes of the dynamical matrix, the displacement field between successive compression steps, and the overlap between the adjacency matrix, which represents the network of contacting grains, at φ and φ(J), we find that the contact percolation transition also signals the onset of a nontrivial mechanical response to applied stress. Our results show that cooperative particle motion occurs in unjammed systems significantly below the jamming transition for φ(P)<φ<φ(J), not only for jammed systems with φ>φ(J).
用于生成纯排斥、无摩擦颗粒的堵塞堆积的典型准静态压缩算法,从稀疏构型开始,然后在每个压缩步骤之间允许弹性能量弛豫的情况下应用连续压缩。众所周知,在各向同性压缩过程中,这些系统在堆积分数φ(J)处经历一阶类似的堵塞转变,从不堵塞状态(压力为零且无承载接触)转变为堵塞的刚性状态(压力非零、存在承载接触的渗流网络且接触数z = 2d,其中d是空间维度)。通过对具有单分散和双分散粒径分布的二维系统进行计算机模拟,我们研究了二阶类似的接触渗流转变,它在堵塞转变之前发生,堆积分数为φ(P)<φ(J),并标志着颗粒之间形成了跨越系统的非承载接触簇。通过测量动力学矩阵的非软模式数量、连续压缩步骤之间的位移场以及在φ和φ(J)处表示接触颗粒网络的邻接矩阵之间的重叠,我们发现接触渗流转变也标志着对应力施加的非平凡力学响应的开始。我们的结果表明,不仅对于φ>φ(J)的堵塞系统,在φ(P)<φ<φ(J)时,非堵塞系统在显著低于堵塞转变的情况下也会发生协同颗粒运动。