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Mechanotropic Elastomers

机译:机械弹性体

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摘要

Liquid crystal elastomers (LCEs) are anisotropic polymeric materials. When subjected to an applied stress, liquid crystalline (LC) mesogens within the elastomeric polymer network (re)orient to the loading direction. The (re)orientation during deformation results in nonlinear stress-strain dependence (referred to as soft elasticity). Here, we uniquely explore mechanotropic phase transitions in elastomers with appreciable mesogenic content and compare these responses to LCEs in the polydomain orientation. The isotropic (amorphous) elastomers undergo significant directional orientation upon loading, evident in strong birefringence and x-ray diffraction. Functionally, the mechanotropic displacement of the elastomers to load is also nonlinear. However, unlike the analogous polydomain LCE compositions examined here, the isotropic elastomers rapidly recover after deformation. The mechanotropic orientation of the mesogens in these materials increase the toughness of these thiol-ene photopolymers by nearly 1300 % relative to a chemically similar elastomer prepared from wholly isotropic precursors.
机译:液晶弹性体(LCE)是各向异性的聚合物材料。当受到施加的应力时,弹性聚合物网络(RE)内的液晶(LC)颗粒定向到装载方向。变形期间的(RE)取向导致非线性应力 - 应变依赖性(称为软弹性)。在这里,我们在弹性体中唯一地探讨了弹性体中的机电相转变,并将这些反应与多域定向进行比较。各向同性(无定形)弹性体在加载时经历显着的方向取向,在强双折射和X射线衍射中明显明显。在功能上,弹性体的机械旋转位移也是非线性的。然而,与此处检测的类似群体LCE组合物不同,各向同性弹性体在变形后迅速恢复。在这些材料中的颗粒的机械尺寸取向相对于由全部各向同性前体制备的化学上类似的弹性体通过近1300%的耐粒子光聚合物的韧性。

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