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Electroclinic effect in chiral smectic-A liquid crystal elastomers

机译:手性偏晶 - 一种液晶弹性体的电胶效应

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摘要

Chiral smectic-A liquid crystal elastomers are rubbery materials composed of a lamellar arrangement of liquid crystalline mesogens. It has been shown experimentally that these materials shear when subjected to an electric field due to the electrically induced tilt of the director. Experiments have also shown that shearing a chiral smectic-A elastomer gives rise to a polarization. Roughly, the shear force tilts the directors which, in turn, induce electric dipoles. This paper builds on previous works and models the electromechanical response of smectic-A elastomers using free energy contributions that are associated with the lamellar structure, the relative tilt between the director and the layer normal, and the coupling between the director and the electric field. To illustrate the merit of the proposed model, two cases are considered-a deformation induced polarization and an electrically induced deformation. The predictions according to these two models qualitatively agree with experimental findings. Finally, a cylinder composed of helical smectic layers is also considered. It is shown that the electromechanical response varies as a function of the helix angle.
机译:手性近晶 - 液晶弹性体是由液晶颗粒的层状布置组成的橡胶材料。已经通过实验示出了这些材料在由于导向器的电诱导倾斜而受到电场时剪切。实验还表明,剪切手性苦瞳 - 弹性体会产生极化。粗略地,剪切力倾向于董事,依次诱导电偶极子。本文以先前的作品构建,并使用与层状结构相关的自由能量贡献,导向器和层之间的相对倾斜和导向器和电场之间的耦合来模拟蒙脱液 - 弹性体的机电响应。为了说明所提出的模型的优点,两种情况被认为是变形诱导的偏振和电致变形。根据这两种模型的预测定性地同意实验结果。最后,还考虑了由螺旋椎间型层组成的圆柱体。结果表明,机电响应随着螺旋角的函数而变化。

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