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Necking Instability during Polydomain-Monodomain Transition in a Smectic Main-Chain Elastomer

机译:近晶片主链弹性体的多畴-单畴过渡过程中的颈椎不稳定性

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摘要

The mechanical response and the evolution of director orientation are characterized in a smectic, main-chain liquid crystalline elastomer (LCE) as it undergoes the familiar polydomain-monodomain (P-M) transition. Under uniaxial tension, the LCE behaves like an ordinary rubber-like network at low strains, and local director rotations are shown to slightly favor the perpendicular ("anomalous") orientation of chain axes with respect to the draw direction. As strain increases, a well-defined yield stress is observed due to the onset of a necking instability. Macroscopic elongation proceeds by growth of the necked monodomain region, which appears to Consume the non-necked polydomain region(s) at its boundaries. Within the necked region. the parallel ("normal") orientation of chain axes with respect to the draw direction is strongly favored. The P-M transition is attributed to a change in the conformation of the elastic polymer backbones from hairpinned coils to extended chains. Under the conditions of temperature and strain rate studied, buckling of the smectic layers is observed its the fully necked monodomain state is approached.
机译:机械响应和指向矢取向的演变以近晶型主链液晶弹性体(LCE)为特征,因为它经历了熟悉的多畴-单畴(P-M)转变。在单轴张力下,LCE在低应变下的行为类似于普通的橡胶状网络,并且局部指向矢旋转显示为稍微偏向于链轴相对于拉伸方向的垂直(“异常”)取向。随着应变的增加,由于颈缩不稳定性的开始,观察到了明确的屈服应力。宏观伸长通过颈状单畴区域的生长而进行,这似乎在其边界处消耗了非颈状多畴区域。在颈区域内。强烈建议链轴相对于拉伸方向平行(“正常”)定向。 P-M过渡归因于弹性聚合物主链构象从发夹的卷曲到延伸的链的变化。在所研究的温度和应变率条件下,近晶层发生屈曲,接近全颈单畴态。

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