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The principle of non-mechanical transport of a liquid crystal in thin capillaries

机译:薄毛细管中液晶的非机械传输原理

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摘要

The non-mechanical principle of transport of a liquid crystal (LC) encapsulated in a narrow cavity between two coaxially arranged cylinders is introduced based on the interaction of the temperature and director field gradients. The temperature gradient is created due to a heat flow from the inner cylinder surface, whereas the temperature on the outer cylinder surface is maintained constant. The director field gradient is caused by the deformation of the planar-oriented LC cavity upon exposure to a double electrostatic layer, which naturally appears at the LC phase-solid interface. The size of the gap between the bounding surfaces, cylinder curvatures, and thermal conditions are determined, which allow initiation of the LC phase flow in the horizontal direction.
机译:基于温度和指向矢场梯度的相互作用,介绍了在两个同轴排列的圆柱体之间的狭窄腔体内封装的液晶(LC)的非机械传输原理。温度梯度是由于热量从圆柱内表面流出而产生的,而圆柱外表面上的温度则保持恒定。指向矢场梯度是由平面定向LC腔在暴露于双静电层(自然出现在LC相-固相界面)时的变形引起的。确定边界表面之间的间隙大小,圆柱曲率和热条件,这些条件允许在水平方向上启动LC相流。

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