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Modeling out-of-plane actuation in thin-film nematic polymer networks: From chiral ribbons to auto-origami boxes via twist and topology

机译:建模薄膜向列型聚合物网络中的平面外驱动:从手性色带到通过扭曲和拓扑结构的自动折纸盒

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摘要

Various experimental and theoretical studies demonstrate that complex stimulus-responsive out-of-plane distortions such as twist of different chirality, emergence of cones, simple and anticlastic bending can be engineered and pre-programmed in a liquid crystalline rubbery material given a well-controlled director microstructure. Via 3-d finite element simulation studies, we demonstrate director-encoded chiral shape actuation in thin-film nematic polymer networks under external stimulus. Furthermore, we design two complex director fields with twisted nematic domains and nematic disclinations that encode a pattern of folds for an auto-origami box. This actuator will be flat at a reference nematic state and form four well-controlled bend distortions as orientational order changes. Device fabrication is applicable via current experimental techniques. These results are in qualitative agreement with theoretical predictions, provide insight into experimental observations, and demonstrate the value of finite element methods at the continuum level for designing and engineering liquid crystal polymeric devices.
机译:各种实验和理论研究表明,在控制良好的情况下,可以在液晶橡胶材料中设计并预先编程复杂的刺激响应平面外扭曲,例如不同手性的扭曲,圆锥的出现,简单和抗弹性弯曲。主任微观结构。通过3维有限元模拟研究,我们证明了在外部刺激下薄膜向列型聚合物网络中导演编码的手性形状致动。此外,我们设计了两个复杂的导向器字段,它们具有扭曲的向列域和向列错位,它们编码自动折纸盒的折叠模式。该致动器将在参考向列状态下变平,并随着方向顺序的变化而形成四个受良好控制的弯曲变形。器件制造可通过当前的实验技术进行。这些结果与理论预测在质量上吻合,为实验观察提供了见识,并在连续性水平上证明了有限元方法对于设计和制造液晶聚合物器件的价值。

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