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首页> 外文期刊>International journal of non-linear mechanics >A gradient model of light-induced bending in photochromic liquid crystal elastomer and its nonlinear behaviors
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A gradient model of light-induced bending in photochromic liquid crystal elastomer and its nonlinear behaviors

机译:光致变色液晶弹性体中光致弯曲的梯度模型及其非线性行为

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摘要

Photochromic liquid crystal elastomer was recently reported to be able to deform largely and bend under illumination. In this paper, considering the opto-chemical process and the nematic-isotropic phase transition, we introduce the light and temperature into the constitutive relation of the liquid crystal elastomers, and propose a model for the light-induced bending. The dynamic deflection curve equation of the light-induced bending is derived based on the Hamilton principle. In the equation, the effect of light is introduced as an effective optical bending moment, which is caused by the inhomogeneous light-induced strain and Young's modulus. Several simulation examples are given to show the light-induced bending under different boundary conditions and various illumination or temperature controlling. Under the condition of deep nematic phase and weak enough illumination, the approximate analytical expression of the effective moment and the stress distribution can be obtained. Rich nonlinear behaviors are found in this model. The effective moment is a non-monotonic function of time, thickness ratio, and light intensity when the thickness ratio is not very large. The stress distribution through the thickness is nonlinear with two or three zero-stress planes.
机译:最近报道了光致变色液晶弹性体能够很大程度地变形并在照明下弯曲。本文考虑了光化学过程和向列各向同性的相变,将光和温度引入液晶弹性体的本构关系,并提出了光致弯曲的模型。基于汉密尔顿原理,推导了光致弯曲的动态挠曲曲线方程。在方程中,将光的影响作为有效的光学弯矩引入,这是由不均匀的光致应变和杨氏模量引起的。给出了几个仿真示例,以显示在不同边界条件和各种照明或温度控制下的光致弯曲。在向列相较深,照度不足的情况下,可以得到有效力矩和应力分布的近似解析表达式。在该模型中发现了丰富的非线性行为。当厚度比不是很大时,有效力矩是时间,厚度比和光强度的非单调函数。通过厚度的应力分布是非线性的,具有两个或三个零应力平面。

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