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Mechanical Deformations in Smectic-C Main-Chain Liquid-Crystalline Elastomers

机译:Smectic-C主链液晶弹性体的机械变形

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摘要

A novel crosslinked smectic-C Main-Chain Liquid-Crystalline Elastomer (MCLCE) has been synthesized by poly condensation of vinyloxy-terminated mesogens, tetramethyldisiloxane and pentamethylpentaoxapentasilecane. The introduction of the functional vinyloxy group allows the synthesis of well-defined networks having low soluble content and good mechanical properties. Networks having a macroscopic uniformly ordered director and a conical distribution of the smectic layer normal with respect to the director are mechanically deformed by uniaxial and shear deformations. Under uniaxial deformations two processes were observed: parallel to the director the mechanical field directly couples to the smectic tilt angle while perpendicular to the director a reorientation process takes place. A shear deformation parallel and perpendicular to the director causes a uniform layer orientation and the network exhibits a smectic-C monodomain phase having a macroscopic uniform director and layer orientation. This process is reversible for shear deformation perpendicular and irreversible by applying the shear force parallel to the director.
机译:一种新型的交联的近晶C主链液晶弹性体(MCLCE)是通过乙烯基氧基封端的液晶元,四甲基二硅氧烷和五甲基五氧杂戊四硅氧烷的缩聚反应合成的。官能乙烯基氧基的引入允许合成具有低可溶性含量和良好机械性能的明确定义的网络。具有宏观均匀有序的指向矢和近晶层相对于指向矢的圆锥形分布的网络通过单轴和剪切变形而机械变形。在单轴变形下,观察到两个过程:平行于导向器,机械场直接耦合至近晶倾斜角,而垂直于导向器,则发生重新定向过程。平行于和垂直于指向矢的剪切变形导致均匀的层取向,并且网络表现出具有宏观的均匀指向矢和层取向的近晶C单畴相。对于垂直方向的剪切变形,此过程是可逆的,而通过平行于导向器施加剪切力,则此过程不可逆。

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