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Tunable wrinkling of thin nematic liquid crystal elastomer sheets

机译:薄型液晶弹性体片的可调皱纹

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摘要

Instabilities in thin elastic sheets, such as wrinkles, are of broad interest both from a fundamental viewpoint and also because of their potential for engineering applications. Nematic liquid crystal elastomers offer a new form of control of these instabilities through direct coupling between microscopic degrees of freedom, resulting from orientational ordering of rodlike molecules, and macroscopic strain. By a standard method of dimensional reduction, we construct a plate theory for thin sheets of nematic elastomer. We then apply this theory to the study of the formation of wrinkles due to compression of a thin sheet of nematic liquid crystal elastomer atop an elastic or fluid substrate. We find the scaling of the wrinkle wavelength in terms of material parameters and the applied compression. The wavelength of the wrinkles is found to be nonmonotonic in the compressive strain due to the presence of the nematic. Finally, due to soft modes, the critical stress for the appearance of wrinkles can be much higher than in an isotropic elastomer and depends nontrivially on the manner in which the elastomer was prepared.
机译:薄弹性板的不稳定性,例如皱纹,来自基本观点,也具有广泛的兴趣,并且还因为它们对工程应用的潜力。向列液晶弹性体通过在显微自由度之间的直接耦合,由棒状分子的取向排序和宏观菌株产生的直接耦合来提供新的一种控制这些不稳定性的形式。通过一种尺寸减少的标准方法,我们构建了一种用于薄片的向甲型弹性体的板理论。然后,我们将该理论应用于由于在弹性或流体基板上的薄片薄板的压缩而对皱纹形成的研究。我们在材料参数和施加的压缩方面找到了皱纹波长的缩放。由于向列的存在,发现皱纹的波长在压缩菌株中是非单调的。最后,由于软模式,皱纹的外观的临界应力可以高于各向同性弹性体中的临界应力,并且在制备弹性体的方式上是不依赖的。

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