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Constriction flows of monodisperse linear entangled polymers: Multiscale modeling and flow visualization

机译:单分散线性缠绕聚合物的收缩流量:多尺度建模和流量可视化

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摘要

We explore both the rheology and complex flow behavior of monodisperse polymer melts. Adequate quantities of monodisperse polymer were synthesized in order that both the materials rheology and microprocessing behavior could be established. In parallel, we employ a molecular theory for the polymer rheology that is suitable for comparison with experimental rheometric data and numerical simulation for microprocessing flows. The model is capable of matching both shearand extensional data with minimal parameter fitting. Experimental data for the processing behavior of monodisperse polymers are presented for the first time as flow birefringence and pressure difference data obtained using a Multipass Rheometer with an 11:1 constriction entry and exit flow. Matching of experimental processing data was obtained using the constitutive equation with the Lagrangian numerical solver, FLOWSOLVE. The results show the direct coupling between molecular constitutive response and macroscopic processing behavior, and differentiate flow effects that arise separately from orientation and stretch.
机译:我们探索了单分散聚合物熔体的流变学和复杂的流动行为。合成了足够数量的单分散聚合物,以便可以确定材料的流变性和微加工行为。同时,我们采用分子理论进行聚合物流变学研究,该理论适合与实验流变数据和微处理流的数值模拟进行比较。该模型能够以最小的参数拟合来匹配剪切和扩展数据。单分散聚合物加工行为的实验数据首次作为流量双折射和压差数据出现,使用具有11:1收缩入口和出口流量的Multipass流变仪获得。使用本构方程与拉格朗日数值求解器FLOWSOLVE进行实验处理数据的匹配。结果表明分子本构反应和宏观加工行为之间的直接耦合,并区分与方向和拉伸分别产生的流动效应。

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