Golkia Mehrdad, Shrivastav Gaurav P, Chaudhuri Pinaki, Horbach Jürgen
Institut für Theoretische Physik II: Weiche Materie, Heinrich Heine-Universität Düsseldorf, Universitätsstraße 1, 40225 Düsseldorf, Germany.
Institute for Theoretical Physics, TU Wien, Wiedner Hauptstraße 8-10, 1040 Wien, Austria.
Phys Rev E. 2020 Aug;102(2-1):023002. doi: 10.1103/PhysRevE.102.023002.
Using extensive nonequilibrium molecular dynamics simulations, we investigate a glass-forming binary Lennard-Jones mixture under shear. Both supercooled liquids and glasses are considered. Our focus is on the characterization of inhomogeneous flow patterns such as shear bands that appear as a transient response to the external shear. For the supercooled liquids, we analyze the crossover from Newtonian to non-Newtonian behavior with increasing shear rate γ[over ̇]. Above a critical shear rate γ[over ̇]_{c} where a non-Newtonian response sets in, the transient dynamics are associated with the occurrence of short-lived vertical shear bands, i.e., bands of high mobility that form perpendicular to the flow direction. In the glass states, long-lived horizontal shear bands, i.e., bands of high mobility parallel to the flow direction, are observed in addition to vertical ones. The systems with shear bands are characterized in terms of mobility maps, stress-strain relations, mean-squared displacements, and (local) potential energies. The initial formation of a horizontal shear band provides an efficient stress release, corresponds to a local minimum of the potential energy, and is followed by a slow broadening of the band towards the homogeneously flowing fluid in the steady state. Whether a horizontal or a vertical shear band forms cannot be predicted from the initial undeformed sample. Furthermore, we show that with increasing system size, the probability for the occurrence of horizontal shear bands increases.
通过广泛的非平衡分子动力学模拟,我们研究了一种受剪切作用的玻璃形成二元 Lennard-Jones 混合物。同时考虑了过冷液体和玻璃态。我们的重点是表征非均匀流动模式,例如作为对外部剪切的瞬态响应而出现的剪切带。对于过冷液体,我们分析了随着剪切速率γ̇增加,从牛顿行为到非牛顿行为的转变。在临界剪切速率γ̇c 以上,当非牛顿响应开始出现时,瞬态动力学与短寿命垂直剪切带的出现相关,即形成垂直于流动方向的高迁移率带。在玻璃态中,除了垂直剪切带外,还观察到了长寿命的水平剪切带,即平行于流动方向的高迁移率带。具有剪切带的系统通过迁移率图、应力-应变关系、均方位移和(局部)势能来表征。水平剪切带的初始形成提供了有效的应力释放,对应于势能的局部最小值,随后在稳态下带向均匀流动的流体缓慢扩展。无法从初始未变形的样品中预测会形成水平剪切带还是垂直剪切带。此外,我们表明,随着系统尺寸的增加,出现水平剪切带的概率增加。