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缠结梳状聚合物简单剪切流启动过程中的双应力过冲

Double Stress Overshoot in Start-Up of Simple Shear Flow of Entangled Comb Polymers.

作者信息

Snijkers F, Vlassopoulos D, Ianniruberto G, Marrucci G, Lee H, Yang J, Chang T

机构信息

Institute of Electronic Structure and Laser, FORTH, Heraklion 71110, Crete, Greece.

Department of Materials Science & Technology, University of Crete, Heraklion 71003, Crete, Greece.

出版信息

ACS Macro Lett. 2013 Jul 16;2(7):601-604. doi: 10.1021/mz400236z. Epub 2013 Jun 14.

Abstract

We report on the unusual response of a well-characterized entangled comb polymer in simple shear flow. The polymer with highly entangled backbone (about 16 entanglements) and on average 29 long branches (about 3 entanglements each) has been extensively characterized by interaction chromatography and its rheology carefully studied under controlled conditions using a special cone partitioned-plate geometry. We observe that the start-up shear stress becomes roughly rate independent above a certain critical rate, related to the relaxation time of the branches. Within the rate-independent region, the start-up shear stress displays a double overshoot. We interpret these observations in light of tube-based pompom dynamics. The key idea is that for sufficiently long branches the main stress overshoot, which reflects backbone stretching and orientation, is preceded by the withdrawal of branches into the backbone tube. The excellent quantitative comparison between the simulations and experiments supports the proposed mechanism of the double stress overshoot.

摘要

我们报道了一种特性明确的缠结梳状聚合物在简单剪切流中的异常响应。这种聚合物具有高度缠结的主链(约16个缠结),平均有29个长支链(每个约3个缠结),已通过相互作用色谱法进行了广泛表征,并使用特殊的锥形分隔板几何结构在受控条件下仔细研究了其流变学。我们观察到,在高于与支链松弛时间相关的某个临界速率时,起始剪切应力大致与速率无关。在速率无关区域内,起始剪切应力呈现双超调。我们根据基于管的绒球动力学来解释这些观察结果。关键思想是,对于足够长的支链,反映主链拉伸和取向的主应力超调之前,支链会回缩到主链管中。模拟与实验之间出色的定量比较支持了所提出的双应力超调机制。

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