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拉伸向列型弹性体细丝在溶胀时的形状不稳定性。

Shape instability on swelling of a stretched nematic elastomer filament.

作者信息

Cheewaruangroj N, Terentjev E M

机构信息

Cavendish Laboratory, University of Cambridge, JJ Thomson Avenue, Cambridge CB3 0HE, United Kingdom.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Oct;92(4):042502. doi: 10.1103/PhysRevE.92.042502. Epub 2015 Oct 6.

Abstract

Liquid crystalline elastomers combine the ordering properties of liquid crystals with elasticity of crosslinked polymer networks. In monodomain (permanently aligned) elastomers, altering the orientational (nematic) order causes changes in the equilibrium sample length, which is the basis of the famous effect of large-amplitude reversible mechanical actuation. The stimulus for this effect could be a change in temperature, or illumination by light in photosensitized elastomers, but equally the nematic order changes by mixing with a solvent. This work theoretically investigates a competition between the spontaneous contraction on swelling of a monodomain nematic elastomer and the externally imposed stretching. We find that this competition leads to bistability in the system and allows a two-phase separation between a nematic state with lower swelling and an isotropic state with higher solvent concentration. We calculated the conditions in which the instability occurs as well as the mechanical and geometric parameters of equilibrium states. Being able to predict how this instability arises will provide opportunities for exploiting nematic elastomer filaments.

摘要

液晶弹性体将液晶的有序特性与交联聚合物网络的弹性结合在一起。在单畴(永久排列)弹性体中,改变取向(向列)序会导致平衡样品长度发生变化,这是著名的大振幅可逆机械驱动效应的基础。这种效应的刺激因素可以是温度变化、光敏弹性体中的光照,但同样向列序也会因与溶剂混合而改变。这项工作从理论上研究了单畴向列弹性体溶胀时的自发收缩与外部施加拉伸之间的竞争。我们发现这种竞争导致系统出现双稳态,并允许在较低溶胀的向列态和较高溶剂浓度的各向同性态之间发生两相分离。我们计算了不稳定性出现的条件以及平衡态的力学和几何参数。能够预测这种不稳定性如何产生将为利用向列弹性体细丝提供机会。

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