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Thermally driven giant bending of liquid crystal elastomer films with hybrid alignment

机译:具有混合取向的液晶弹性体膜的热驱动大弯曲

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We have investigated the thermally induced bending deformation of nematic elastomers with hybrid alignment (HNEs) where the director continuously rotates by 90° (from planar alignment to vertical alignment) between the top and bottom surfaces. The flat specimen of nematic gel in the preparation state exhibits a considerable bending when allowed to deswell to the dry state. The curvature of the dried elastomer film markedly depends on temperature. The curvature in the nematic state increases with heating, and the film apparently becomes flat at a certain temperature. Further heating induces the bending in the opposite direction. In the high-temperature isotropic state, the curvature is independent of temperature. This bending deformation is thermally reversible. We successfully interpret the temperature dependence of curvature for the HNEs assuming a linear variation of strain in the thickness direction on the basis of the thermally uniaxial deformation of the nematic elastomers with globally planar or vertical alignment. We also conduct a numerical simulation on the basis of a nonlinear elasticity model to reproduce the observation. The simulation using the material parameters that are almost identical with the corresponding experimental values explains the phenomenon and demonstrates the stress and strain distribution in the curled HNEs.
机译:我们已经研究了混合取向(HNE)引起的向列弹性体的热诱导弯曲变形,其中指向矢在顶表面和底表面之间连续旋转90°(从平面取向到垂直取向)。在制备状态下,向列型凝胶的扁平样品在使其溶胀至干燥状态时表现出相当大的弯曲。干燥的弹性体膜的曲率明显取决于温度。向列状态的曲率随着加热而增加,并且膜在一定温度下显然变得​​平坦。进一步加热会引起沿相反方向的弯曲。在高温各向同性状态下,曲率与温度无关。这种弯曲变形是热可逆的。我们成功地解释了HNE的曲率对温度的依赖性,并假设在向列弹性体整体平面或垂直排列的向列弹性体的热单轴变形的基础上,厚度方向上的应变呈线性变化。我们还基于非线性弹性模型进行了数值模拟,以重现观察结果。使用与相应的实验值几乎相同的材料参数进行的模拟解释了该现象,并证明了卷曲HNE中的应力和应变分布。

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