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循环压缩下接近堵塞状态的颗粒材料的应力松弛

Stress Relaxation for Granular Materials near Jamming under Cyclic Compression.

作者信息

Farhadi Somayeh, Zhu Alex Z, Behringer Robert P

机构信息

Department of Physics and Center for Nonlinear and Complex Systems, Box 90305, Duke University, Durham, North Carolina 27708, USA.

出版信息

Phys Rev Lett. 2015 Oct 30;115(18):188001. doi: 10.1103/PhysRevLett.115.188001. Epub 2015 Oct 29.

Abstract

We have explored isotropically jammed states of semi-2D granular materials through cyclic compression. In each compression cycle, systems of either identical ellipses or bidisperse disks transition between jammed and unjammed states. We determine the evolution of the average pressure P and structure through consecutive jammed states. We observe a transition point ϕ_{m} above which P persists over many cycles; below ϕ_{m}, P relaxes slowly. The relaxation time scale associated with P increases with packing fraction, while the relaxation time scale for collective particle motion remains constant. The collective motion of the ellipses is hindered compared to disks because of the rotational constraints on elliptical particles.

摘要

我们通过循环压缩探索了半二维颗粒材料的各向同性堵塞状态。在每个压缩循环中,由相同椭圆或双分散圆盘组成的系统在堵塞和非堵塞状态之间转变。我们确定了平均压力P和结构在连续堵塞状态下的演变。我们观察到一个转变点ϕ_m,高于该点时P在多个循环中持续存在;低于ϕ_m时,P缓慢松弛。与P相关的弛豫时间尺度随填充率增加,而集体粒子运动的弛豫时间尺度保持不变。由于椭圆颗粒的旋转限制,与圆盘相比,椭圆的集体运动受到阻碍。

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