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Modeling shear thickening in dilute polymer solutions: Temperature, concentration, and molecular weight dependencies

机译:在稀聚合物溶液中模拟剪切增稠:温度,浓度和分子量依赖性

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摘要

The Two Coupled Maxwell Modes (TCMM) Model is applied to give quantitative descriptions of shear-thickening behavior, which can be observed under certain conditions for high molecular weight polymers dissolved in low viscosity solvents. The TCMM Model is written in terms of five parameters representing the relaxation time of each mode, the concentration of each mode, and a coupling parameter between the two modes. Using all of the available experimental data for steady-shear viscosity and dichroism we found in the literature, we performed a full parameterization of these five quantities. Furthermore, from this parameterization we can describe the functional dependencies of the relaxation times, modal concentrations, and coupling parameter as functions of temperature, concentration, and molecular weight of the polymer. These functional dependencies are explained in light of the underlying physics imbedded in the TCMM Model. We demonstrate that by optimizing to only the viscosity data, we were able to obtain the same relaxation times, modal concentrations, and coupling parameter as using both the viscosity and dichroism data. This is useful because typically the experimental dichroism data is not available. (C) 2003 Wiley Periodicals, Inc. [References: 21]
机译:应用了两种麦克斯韦模式(TCMM)模型来给出剪切增稠行为的定量描述,对于在低粘度溶剂中溶解的高分子量聚合物,可以在某些条件下观察到。 TCMM模型是根据五个参数编写的,这些参数代表每种模式的弛豫时间,每种模式的集中度以及两种模式之间的耦合参数。使用我们在文献中发现的所有有关稳态剪切粘度和二色性的实验数据,我们对这五个量进行了完整的参数化。此外,从该参数化中,我们可以描述弛豫时间,模态浓度和偶联参数与聚合物的温度,浓度和分子量之间的函数关系。这些功能依赖性是根据TCMM模型中嵌入的基本物理原理进行解释的。我们证明了通过仅优化粘度数据,我们能够获得与使用粘度和二色性数据相同的弛豫时间,模态浓度和偶联参数。这很有用,因为通常无法获得实验性二色性数据。 (C)2003 Wiley Periodicals,Inc. [参考:21]

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