Mao Y, Terentjev E M, Warner M
Cavendish Laboratory, University of Cambridge, Madingley Road, Cambridge, CB3 0HE, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2001 Oct;64(4 Pt 1):041803. doi: 10.1103/PhysRevE.64.041803. Epub 2001 Sep 24.
A mechanical strain applied to a monodomain cholesteric elastomer modulates and eventually unwinds the helical director distribution. There are similarities with the classical problem of an electric field applied to a cholesteric liquid crystal, but also differences. Frank elasticity is of minor importance unless the gel is very weak. The interplay is rather between the director being helically anchored to the rubber elastic matrix and the external mechanical field. Stretching perpendicular to the helix axis induces the uniform unwound state via the elimination of sharp, pinned twist walls above a critical strain. Below the critical strain the coarsening of the director distribution is not accompanied by an increase but rather by an affine decrease in the pitch. Unwinding through conical director states occurs when the elastomer is stretched along the helical axis. Finally we consider cholesteric elastomers in a classical device geometry with an electric field applied along the pitch axis and hence transverse to the director orientation.
施加于单畴胆甾型弹性体的机械应变会调制并最终解开螺旋指向矢分布。这与施加电场于胆甾型液晶的经典问题有相似之处,但也存在差异。除非凝胶非常脆弱,否则弗兰克弹性的影响较小。相互作用主要存在于螺旋锚定在橡胶弹性基体上的指向矢与外部机械场之间。垂直于螺旋轴拉伸会通过消除高于临界应变的尖锐、固定扭转壁诱导出均匀的解旋状态。在临界应变以下时,指向矢分布变粗并非伴随着螺距增加而是仿射减小。当弹性体沿螺旋轴拉伸时,会通过锥形指向矢状态发生解旋。最后,我们考虑处于经典器件几何结构中的胆甾型弹性体,并沿螺距轴施加电场,从而使其垂直于指向矢方向。