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The effects of elongated nematic bipolar droplet orientation on the performance of polymer-dispersed liquid crystal films

机译:向列型双极性微滴取向延长对聚合物分散液晶薄膜性能的影响

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The effects that the elongated nematic bipolar droplet orientation has on the performance of polymer-dispersed liquid crystal (PDLC) films are elucidated in this paper using modeling and simulation. Important performance criteria are low switching field strength in the on-state, good light contrast between the on- and off-states, and fast relaxation time in the off-state. In particular, the model incorporates the Leslie-Ericksen and Frank liquid crystal theories and an external magnetic field. The model is solved in two-dimensions within an ellipse of aspect ratio 1.5. The numerical results indicate that the PDLC film should be designed with the bipolar droplet axis of symmetry normal to the film plane in order to minimize both the required switching field strength and relaxation time. On the other hand, the PDLC film should be designed with the bipolar droplet axis of symmetry oriented within the film plane in order to maximize the light contrast between the on- and off-states.
机译:通过建模和仿真,阐明了向列双极性液滴的长条取向对聚合物分散液晶(PDLC)薄膜性能的影响。重要的性能标准是导通状态下的低开关场强度,导通状态和截止状态之间的良好光对比度以及截止状态下的快速弛豫时间。特别是,该模型结合了Leslie-Ericksen和Frank的液晶理论以及外部磁场。该模型在纵横比为1.5的椭圆内二维求解。数值结果表明,PDLC膜应设计成具有垂直于膜平面的双极液滴对称轴,以使所需的开关场强度和弛豫时间最小化。另一方面,PDLC膜应设计成在膜平面内定向的双极性液滴对称轴,以最大程度地提高开和关状态之间的光对比度。

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