Suppr超能文献

基于 Gay-Berne 流体和软球串流体的向列相液晶的剪切流模拟

Shear flow simulations of smectic liquid crystals based on the Gay-Berne fluid and the soft sphere string-fluid.

机构信息

Department of Materials and Environmental Chemistry, Arrhenius Laboratory, Stockholm University, 106 91 Stockholm, Sweden.

出版信息

Phys Chem Chem Phys. 2018 Dec 19;21(1):292-305. doi: 10.1039/c8cp05077e.

Abstract

We have studied the shear flow of the smectic A phase of three coarse grained liquid crystal model systems, namely two versions of the Gay-Berne fluid and the soft sphere string-fluid. At low shear rates, the orientation where the smectic layers are parallel to the shear plane and the orientation parallel to the vorticity plane are both stable in all the systems. In one of the Gay-Berne fluids, there is a transition from the orientation parallel to the shear plane to the orientation parallel to the vorticity plane. At higher shear rates, a nonequilibrium nematic phase is obtained in all the systems in the same way as in linear alkanes under shear. If the initial configuration is an equilibrium smectic A phase or a nematic phase with the molecules parallel to the streamlines, the orientation parallel to the shear plane is attained at low shear rates in the Gay-Berne fluids. In order to analyze the stability of the different orientations, the torque acting on the liquid crystal is calculated. It consists of an elastic torque caused by deformations due to the shape of the simulation cell and the periodic boundary conditions and a shear-induced torque. The elastic torque stabilizes both the orientation parallel to the shear plane and the orientation parallel to the vorticity plane because the liquid crystal is deformed if it is turned away from these orientations. The shear-induced torque, on the other hand, always turns the liquid crystal to the orientation parallel to the vorticity plane where the viscosity and the irreversible energy dissipation rate are minimal. Since the latter torque is proportional to the square of the shear rate, rather high shear rates are required for it to overwhelm the elastic torque. However, the elastic torque decreases with the system size so that it is likely that the shear-induced torque will dominate in large systems and that the orientation parallel to the vorticity plane will be attained at low or even zero shear rate.

摘要

我们研究了三种粗粒度液晶模型体系的向列 A 相的剪切流动,即两种 Gay-Berne 流体和软球串流体。在低剪切速率下,在所有体系中,平行于剪切面的取向和平行于涡度面的取向都是稳定的。在一种 Gay-Berne 流体中,存在从平行于剪切面的取向到平行于涡度面的取向的转变。在较高的剪切速率下,所有体系都以与线性烷烃在剪切下相同的方式获得非平衡向列相。如果初始构型是平衡向列 A 相或分子平行于流线的向列相,那么在 Gay-Berne 流体中,在低剪切速率下,取向平行于剪切面。为了分析不同取向的稳定性,计算了作用在液晶上的扭矩。它由由于模拟盒的形状和周期性边界条件引起的变形引起的弹性扭矩和剪切诱导扭矩组成。弹性扭矩稳定平行于剪切面和平行于涡度面的取向,因为如果液晶偏离这些取向,它会变形。另一方面,剪切诱导扭矩总是将液晶旋转到平行于涡度面的取向,在该取向处粘度和不可逆能量耗散率最小。由于后一个扭矩与剪切速率的平方成正比,因此需要相当高的剪切速率才能使其克服弹性扭矩。然而,弹性扭矩随系统尺寸减小,因此在大系统中,剪切诱导扭矩可能会占主导地位,并且在低甚至零剪切速率下,将获得平行于涡度面的取向。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验