向列型聚合物网络中拓扑缺陷驱动的形状不稳定性

IF 1.4 3区 工程技术 Q2 ENGINEERING, MULTIDISCIPLINARY
Silvia Paparini, Giulio G. Giusteri, L. Angela Mihai
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引用次数: 0

摘要

液晶网络(lcnn)是一种刺激响应材料,由交联的聚合物链与棒状介晶段形成,在向列相,沿着非极性方向排列。这些向列系统的一个关键特征是在指向域中存在奇点,称为拓扑缺陷或偏差,并根据它们的拓扑电荷进行分类。在这项研究中,我们通过提供一个数学框架来描述含有中心拓扑缺陷的初始平坦LCN片的面外形状变化,解决了从理论上模拟介原偏差和聚合物网络之间耦合的开放问题。采用变分方法,我们定义了由两个贡献组成的与变形相关的能量:一个用于计算空间方向变化的弹性能量项,以及一个描述聚合物网络弹性响应的应变-能量函数。向列弹性(旨在最大限度地减少定向场中的扭曲)、有序程度的变化(随着外部刺激,聚合物链中的单体倾向于各向异性分布)和机械刚度(抵抗变形)之间的相互作用决定了最终的形态。我们分析了基态平面构型向失稳的转变,并对相应的屈曲模态进行了表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shape Instabilities Driven by Topological Defects in Nematic Polymer Networks

Liquid crystalline networks (LCNs) are stimuli-responsive materials formed from polymeric chains cross-linked with rod-like mesogenic segments, which, in the nematic phase, align along a non-polar director. A key characteristic of these nematic systems is the existence of singularities in the director field, known as topological defects or disclinations, and classified by their topological charge. In this study, we address the open question of modeling theoretically the coupling between mesogens disclination and polymeric network by providing a mathematical framework describing the out-of-plane shape changes of initially flat LCN sheets containing a central topological defect. Adopting a variational approach, we define an energy associated with the deformations consisting of two contributions: an elastic energy term accounting for spatial director variations, and a strain-energy function describing the elastic response of the polymer network. The interplay between nematic elasticity, which seeks to minimize distortions in the director field, variations in the degree of order, with the consequent tendency of monomers in the polymer chains to distribute anisotropically in response to an external stimulus, and mechanical stiffness, which resists deformation, determines the resulting morphology. We analyze the transition to instability of the ground-state flat configuration and characterize the corresponding buckling modes.

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来源期刊
Journal of Elasticity
Journal of Elasticity 工程技术-材料科学:综合
CiteScore
3.70
自引率
15.00%
发文量
74
审稿时长
>12 weeks
期刊介绍: The Journal of Elasticity was founded in 1971 by Marvin Stippes (1922-1979), with its main purpose being to report original and significant discoveries in elasticity. The Journal has broadened in scope over the years to include original contributions in the physical and mathematical science of solids. The areas of rational mechanics, mechanics of materials, including theories of soft materials, biomechanics, and engineering sciences that contribute to fundamental advancements in understanding and predicting the complex behavior of solids are particularly welcomed. The role of elasticity in all such behavior is well recognized and reporting significant discoveries in elasticity remains important to the Journal, as is its relation to thermal and mass transport, electromagnetism, and chemical reactions. Fundamental research that applies the concepts of physics and elements of applied mathematical science is of particular interest. Original research contributions will appear as either full research papers or research notes. Well-documented historical essays and reviews also are welcomed. Materials that will prove effective in teaching will appear as classroom notes. Computational and/or experimental investigations that emphasize relationships to the modeling of the novel physical behavior of solids at all scales are of interest. Guidance principles for content are to be found in the current interests of the Editorial Board.
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