Modelling the Deformation of Polydomain Liquid Crystal Elastomers as a State of Hyperelasticity

IF 1.8 3区 工程技术 Q2 ENGINEERING, MULTIDISCIPLINARY Journal of Elasticity Pub Date : 2024-02-26 DOI:10.1007/s10659-024-10055-y
Afshin Anssari-Benam, Zhengxuan Wei, Ruobing Bai
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Abstract

A hyperelasticity modelling approach is employed for capturing various and complex mechanical behaviours exhibited by macroscopically isotropic polydomain liquid crystal elastomers (LCEs). These include the highly non-linear behaviour of nematic-genesis polydomain LCEs, and the soft elasticity plateau in isotropic-genesis polydomain LCEs, under finite multimodal deformations (uniaxial and pure shear) using in-house synthesised acrylate-based LCE samples. Examples of application to capturing continuous softening (i.e., in the primary loading path), discontinuous softening (i.e., in the unloading path) and auxetic behaviours are also demonstrated on using extant datasets. It is shown that our comparatively simple model, which breaks away from the neo-classical theory of liquid crystal elastomers, captures the foregoing behaviours favourably, simply as states of hyperelasticity. Improved modelling results obtained by our approach compared with the existing models are also discussed. Given the success of the considered model in application to these datasets and deformations, the simplicity of its functional form (and thereby its implementation), and comparatively low(er) number of parameters, the presented isotropic hyperelastic strain energy function here is suggested for: (i) modelling the general mechanical behaviour of LCEs, (ii) the backbone in the neo-classical theory, and/or (iii) the basic hyperelastic model in other frameworks where the incorporation of the director, anisotropy, viscoelasticity, temperature, softening etc parameters may be required.

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将多域液晶弹性体的变形模拟为超弹性状态
采用超弹性建模方法捕捉宏观各向同性多域液晶弹性体(LCE)表现出的各种复杂机械行为。其中包括在内部合成的基于丙烯酸酯的液晶弹性体样品的有限多模态变形(单轴和纯剪切)下,向列-成因多域液晶弹性体的高度非线性行为,以及各向同性-成因多域液晶弹性体的软弹性高原。此外,还利用现有数据集演示了捕捉连续软化(即在主要加载路径中)、不连续软化(即在卸载路径中)和辅助行为的应用实例。结果表明,我们的模型相对简单,突破了液晶弹性体的新古典理论,能很好地捕捉前述行为,并简单地将其视为超弹性状态。此外,还讨论了我们的方法与现有模型相比所获得的改进建模结果。鉴于所考虑的模型在这些数据集和变形中的成功应用、其函数形式的简洁性(以及由此带来的实施)和相对较少的参数数量,建议将此处提出的各向同性超弹性应变能函数用于以下方面(i) LCE 的一般力学行为建模,(ii) 新古典理论的骨干,和/或 (iii) 其他框架中的基本超弹性模型,在这些框架中可能需要加入导向、各向异性、粘弹性、温度、软化等参数。
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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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