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Modeling Unentangled Polystyrene Melts in Fast Elongational Flows

机译:在快速伸长流动中建模未造型的聚苯乙烯熔化

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摘要

Recent data of unentangled polystyrene melts in startup elongational flow and subsequent relaxation [Matsumiya, Y.; Watanabe, H.; Masubuchi, Y.; Huang, Q; Hassager, O. Nonlinear Elongational Rheology of Unentangled Polystyrene and Poly(p-Tert-Butylstyrene) Melts. Macromolecules 2018, 51 (23), 9710-9729] are here compared to the predictions of Brownian simulations of Fraenkel chains endowed with a monomeric friction coefficient that decreases with increasing the order parameter of the Kuhn segments. The model compares favorably with all startup data if a time delay in reducing the monomeric friction coefficient is accounted for in the fastest flows, a feature already observed by Matsumiya et al. The same model also describes the relaxation data except for a minor discrepancy in the longest relaxation time, probably due to the imperfect monodispersity of the sample and/or to a minor influence of topological interactions, not strong enough to be called entanglements. A discrepancy is also observed at the beginning of relaxation after fast flows, the origin of which remains unexplained.
机译:在启动拉伸流动和随后的松弛[松宫,Y非缠结聚苯乙烯熔体的最近数据.;渡边,H; Masubuchi,Y;黄,Q; Hassager,非缠结聚苯乙烯和聚(对 - 叔丁基苯乙烯)熔体的O.非线性拉伸流变。大分子2018,51(23),9710-9729]在这里相比赋予与增加库恩段的顺序参数减小单体摩擦系数弗兰克尔链的布朗模拟的预测。该模型与所有启动数据相比是有利的,如果在降低单体摩擦系数的时间延迟在最快的流是占,已经由松宫等人观察到的特征。同样的模型也描述了松弛数据除了在最长弛豫时间上的轻微差异,可能是由于样品的单分散性不完善和/或拓扑交互的影响较小,不会强大到足以被称为纠葛。二者之间的差异也是在快速地流动后放松的开始观察,其中的起源仍然不明。

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