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简单流体中弦相和剪切增稠的重新审视。

Reexamination of string phase and shear thickening in simple fluids.

作者信息

Delhommelle Jerome, Petravic J, Evans Denis J

机构信息

Equipe de Chimie et Biochimie Théoriques, UMR 7565, Université Henri Poincaré Nancy I, Boîte Postale 239, F-54506 Vandoeuvre-lès-Nancy, France.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Sep;68(3 Pt 1):031201. doi: 10.1103/PhysRevE.68.031201. Epub 2003 Sep 3.

Abstract

In 1984, Erpenbeck observed a shear-induced alignment of particles into strings in nonequilibrium molecular dynamics simulations of hard spheres. Since then, it has remained unclear if this effect was genuine or if it arose from the use of a thermostat which assumed an incorrect form for the velocity profile. All studies performed up to now have focused on improving the accuracy with which the velocity profile is determined. We propose here a radically different approach: we apply a recently developed configurational expression for the temperature. This expression does not require any knowledge of the streaming velocity profile. Using a configurational thermostat, we show that the string phase is an artifact and we observe a shear-thickening regime, as seen in experiments on concentrated "hard-sphere"-like colloidal dispersions.

摘要

1984年,厄彭贝克在硬球的非平衡分子动力学模拟中观察到,剪切力会使粒子排列成串。从那时起,尚不清楚这种效应是真实存在的,还是源于使用了一种对速度分布假设了错误形式的恒温器。到目前为止,所有已开展的研究都集中在提高确定速度分布的准确性上。我们在此提出一种截然不同的方法:我们应用最近开发的温度构型表达式。该表达式不需要任何关于流动速度分布的知识。使用构型恒温器,我们表明串状相是一种假象,并且我们观察到了剪切增稠状态,这与在浓缩的“硬球”状胶体分散体实验中所见相同。

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