Zhang H P, Makse H A
Physics Department, City College of New York, New York 10031, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Jul;72(1 Pt 1):011301. doi: 10.1103/PhysRevE.72.011301. Epub 2005 Jul 7.
We investigate the jamming transition in packings of emulsions and granular materials via molecular dynamics simulations. The emulsion model is composed of frictionless droplets interacting via nonlinear normal forces obtained using experimental data acquired by confocal microscopy of compressed emulsions systems. Granular materials are modeled by Hertz-Mindlin deformable spherical grains with Coulomb friction. In both cases, we find power-law scaling for the vanishing of pressure and excess number of contacts as the system approaches the jamming transition from high volume fractions. We find that the construction history parametrized by the compression rate during the preparation protocol has a strong effect on the micromechanical properties of granular materials but not on emulsions. This leads the granular system to jam at different volume fractions depending on the histories. Isostaticity is found in the packings close to the jamming transition in emulsions and in granular materials at slow compression rates and infinite friction. Heterogeneity of interparticle forces increases as the packings approach the jamming transition which is demonstrated by the exponential tail in force distributions and the small values of the participation number measuring spatial localization of the forces. However, no signatures of the jamming transition are observed in structural properties, like the radial distribution functions and the distributions of contacts.
我们通过分子动力学模拟研究了乳液和颗粒材料堆积中的堵塞转变。乳液模型由无摩擦液滴组成,这些液滴通过使用共聚焦显微镜对压缩乳液系统获取的实验数据得到的非线性法向力相互作用。颗粒材料由具有库仑摩擦的赫兹-明德林可变形球形颗粒建模。在这两种情况下,当系统从高体积分数接近堵塞转变时,我们发现压力消失和接触数过量的幂律标度。我们发现,在制备过程中由压缩率参数化的构建历史对颗粒材料的微观力学性质有很强的影响,但对乳液没有影响。这导致颗粒系统根据历史在不同的体积分数下堵塞。在接近堵塞转变的乳液堆积以及慢压缩率和无限摩擦下的颗粒材料堆积中发现了等静压性。随着堆积接近堵塞转变,颗粒间力的不均匀性增加,这通过力分布中的指数尾部以及测量力的空间定位的参与数的小值得到证明。然而,在结构性质中没有观察到堵塞转变的特征,如径向分布函数和接触分布。