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向列型液晶盒中的流动驱动转变及相关速度分布

Flow-driven transition and associated velocity profiles in a nematic liquid-crystal cell.

作者信息

Jewell S A, Cornford S L, Yang F, Cann P S, Sambles J R

机构信息

Electromagnetic Materials Group, School of Physics, University of Exeter, Stocker Road, Exeter EX4 4QL, United Kingdom.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Oct;80(4 Pt 1):041706. doi: 10.1103/PhysRevE.80.041706. Epub 2009 Oct 26.

Abstract

The alignment properties and distribution of flow speed during Poiseuille flow through a microchannel of a nematic liquid crystal in a cell with homeotropic surface alignment has been measured using a combination of conoscopy, fluorescence confocal polarizing microscopy, and time-lapse imaging. Two topologically distinct director profiles, with associated fluid velocity fields, are found to exist with the preferred state dictated by the volumetric flow rate of the liquid crystal. The results show excellent agreement with model data produced using the Ericksen-Leslie nematodynamics theory.

摘要

利用锥光法、荧光共焦偏振显微镜和延时成像技术相结合,测量了向列相液晶在具有垂直表面取向的盒中通过微通道时的泊肃叶流的排列特性和流速分布。发现存在两种拓扑结构不同的指向矢分布以及相关的流体速度场,其优选状态由液晶的体积流量决定。结果与使用埃里克森 - 莱斯利向列动力学理论产生的模型数据高度吻合。

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