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首页> 外文期刊>Macromolecules >Shear Strees Overshoots in Flow Inception of Semiflexible Thermotropic Liquid Crystalline Polymers: Experimental Test of a Parameter-Free Model Prediction
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Shear Strees Overshoots in Flow Inception of Semiflexible Thermotropic Liquid Crystalline Polymers: Experimental Test of a Parameter-Free Model Prediction

机译:半柔性热致液晶聚合物的流动起始中的剪应力超调:无参数模型预测的实验测试

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摘要

We explore the origins of shear stress overshoots upon flow inception of main-chain thermotropic liquid crystalline polymers from a random polydomain initial condition. A simple polydomain simulation strategy, based on Ericksen's transversely isotropic fluid model, is capable of predicting a shear stress overshoot arising from the reorientation dynamics of domains toward a steady state flow aligned state. When model parameters are estimated using elementary molecular theories for semiflexible main-chain thermotropes, both the relative magnitude of the shear stress overshoot and the steady state ratio of first normal stress difference to shear stress are determined solely by the "tumbling" parameter, ).. This implies a universal correlation between these two variables. We test this prediction against an extensive data set on semiflexible polyesters and find good qualitative agreement between model and experiment.
机译:我们探讨了随机多域初始条件下主链热致液晶聚合物流动开始时剪切应力超调的起源。一种简单的基于Ericksen横向各向同性流体模型的多域模拟策略,能够预测由于域朝向稳态流对齐状态的重新定向动力学而引起的切应力超调。当使用基本分子理论对半挠性主链热致伸缩物估计模型参数时,剪切应力过冲的相对大小和第一法向应力差与剪切应力的稳态比均由“翻滚”参数确定。这意味着这两个变量之间存在普遍相关性。我们针对大量有关半柔性聚酯的数据测试了这一预测,并在模型和实验之间找到了良好的定性一致性。

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