Ennis R, Malacarne L C, Palffy-Muhoray P, Shelley M
Liquid Crystal Institute, Kent State University, Kent, Ohio 44242, USA and Pressco Technology, Solon, Ohio 44139, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Dec;74(6 Pt 1):061802. doi: 10.1103/PhysRevE.74.061802. Epub 2006 Dec 8.
We have developed a fully nonlocal model to describe the dynamic behavior of nematic liquid-crystal elastomers. The free energy, incorporating both elastic and nematic contributions, is a function of the material displacement vector and the orientational order parameter tensor. The free energy cost of spatial variations of these order parameters is taken into account through nonlocal interactions rather than through the use of gradient expansions. We also give an expression for the Rayleigh dissipation function. The equations of motion for displacement and orientational order are obtained from the free energy and the dissipation function by the use of a Lagrangian approach. We examine the free energy and the equations of motion in the limit of long-wavelength and small-amplitude variations of the displacement and the orientational order parameter. We compare our results with those in the literature. If the scalar order parameter is held fixed, we recover the usual viscoelastic theory for nematic liquid crystals.
我们开发了一个完全非局部模型来描述向列型液晶弹性体的动态行为。包含弹性和向列贡献的自由能是材料位移矢量和取向序参量张量的函数。这些序参量空间变化的自由能代价是通过非局部相互作用来考虑的,而不是通过使用梯度展开。我们还给出了瑞利耗散函数的表达式。位移和取向序的运动方程是通过使用拉格朗日方法从自由能和耗散函数中得到的。我们研究了位移和取向序参量在长波长和小振幅变化极限下的自由能和运动方程。我们将我们的结果与文献中的结果进行比较。如果标量序参量保持固定,我们就恢复了向列型液晶的通常粘弹性理论。