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Encoding Gaussian curvature in glassy and elastomeric liquid crystal solids

机译:在玻璃态和弹性液晶固体中编码高斯曲率

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摘要

We describe shape transitions of thin, solid nematic sheets with smooth, preprogrammed, in-plane director fields patterned across the surface causing spatially inhomogeneous local deformations. A metric description of the local deformations is used to study the intrinsic geometry of the resulting surfaces upon exposure to stimuli such as light and heat. We highlight specific patterns that encode constant Gaussian curvature of prescribed sign and magnitude. We present the first experimental results for such programmed solids, and they qualitatively support theory for both positive and negative Gaussian curvature morphing from flat sheets on stimulation by light or heat. We review logarithmic spiral patterns that generate cone/anti-cone surfaces, and introduce spiral director fields that encode non-localized positive and negative Gaussian curvature on punctured discs, including spherical caps and spherical spindles. Conditions are derived where these cap-like, photomechanically responsive regions can be anchored in inert substrates by designing solutions that ensure compatibility with the geometric constraints imposed by the surrounding media. This integration of such materials is a precondition for their exploitation in new devices. Finally, we consider the radial extension of such director fields to larger sheets using nematic textures defined on annular domains.
机译:我们描述了薄的,固体向列片的形状过渡,该形状具有在整个表面上图案化的,平滑的,预编程的,面内指向矢场,从而导致空间上不均匀的局部变形。局部变形的度量描述用于研究暴露于光和热等刺激后所得表面的固有几何形状。我们重点介绍编码指定符号和幅度的恒定高斯曲率的特定模式。我们介绍了这种程序设计的固体的第一个实验结果,它们从质量上支持了光或热刺激下平板产生的正高斯曲率和负高斯曲率变形的理论。我们回顾了会生成圆锥/反圆锥表面的对数螺旋图案,并介绍了编码在穿孔圆盘(包括球形盖和球形主轴)上非局部正高斯曲率和负高斯曲率的螺旋指向矢场。通过设计确保与周围介质施加的几何约束兼容的解决方案,得出了可以将这些帽状,光机械响应区域锚定在惰性基板中的条件。这种材料的集成是在新设备中开发这些材料的前提。最后,我们考虑使用在环形域上定义的向列纹理将此类指向矢场径向扩展到更大的薄片。

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