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首页> 外文期刊>International journal of non-linear mechanics >Transitions in Poiseuille flow of nematic liquid crystal
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Transitions in Poiseuille flow of nematic liquid crystal

机译:向列型液晶的泊瓦流变迁

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Recent experiments by Sengupta et al. (Phys. Rev. Lett. 2013) [9] revealed interesting transitions that can occur in flow of nematic liquid crystal under carefully controlled conditions within a long microfluidic channel of width much larger than height, and homeotropic anchoring at the walls. At low flow rates the director field of the nematic adopts a configuration that is dominated by the surface anchoring, being nearly parallel to the channel height direction over most of the cross-section; but at high flow rates there is a transition to a flow-dominated state, where the director configuration at the channel centerline is aligned with the flow (perpendicular to the channel height direction). We analyze simple channel-flow solutions to the Leslie-Ericksen model for nematics. We demonstrate that two solutions exist, at all flow rates, but that there is a transition between the elastic free energies of these solutions: the anchoringdominated solution has the lowest energy at low flow rates, and the flow-dominated solution has lowest energy at high flow rates. (C) 2015 Elsevier Ltd. All rights reserved.
机译:Sengupta等人的最新实验。 (Phys。Rev. Lett。2013)[9]揭示了有趣的转变,该转变可能发生在向列液晶的流动中,在小心控制的条件下,该流动在宽度大于高度的长微流体通道中形成,且垂直方向锚定在壁上。在低流速下,向列相的指向矢场采用一种以表面锚定为主的结构,在大部分横截面上几乎与通道高度方向平行;但是在高流速下,会过渡到以流量为主的状态,在这种状态下,通道中心线处的导向器配置与流量对齐(垂直于通道高度方向)。我们分析了向列相的Leslie-Ericksen模型的简单通道流解决方案。我们证明了在所有流速下都存在两种解决方案,但是这些解决方案的弹性自由能之间存在过渡:锚固控制的解决方案在低流速下具有最低的能量,而流动控制的解决方案在高流速下具有最低的能量。流量。 (C)2015 Elsevier Ltd.保留所有权利。

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