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Shear thinning in dilute polymer solutions

机译:稀聚合物溶液中的剪切稀化

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摘要

We use bead-spring models for a polymer coupled to a solvent described by multiparticle collision dynamics to investigate shear thinning effects in dilute polymer solutions. First, we consider the polymer motion and configuration in a shear flow. For flexible polymer models we find a sharp increase in the polymer radius of gyration and the fluctuations in the radius of gyration at a Weissenberg number similar to 1. We then consider the polymer viscosity and the effect of solvent quality, excluded volume, hydrodynamic coupling between the beads, and finite extensibility of the polymer bonds. We conclude that the excluded volume effect is the major cause of shear thinning in polymer solutions. Comparing the behavior of semiflexible chains, we find that the fluctuations in the radius of gyration are suppressed when compared to the flexible case. The shear thinning is greater and, as the rigidity is increased, the viscosity measurements tend to those for a multibead rod. (c) 2006 American Institute of Physics.
机译:我们将珠粒弹簧模型用于聚合物与多颗粒碰撞动力学描述的溶剂偶联,以研究稀聚合物溶液中的剪切稀化作用。首先,我们考虑剪切流中的聚合物运动和构型。对于柔性聚合物模型,我们发现在类似于1的魏森贝格数下,聚合物的回转半径急剧增加,回转半径发生波动。然后,我们考虑了聚合物粘度和溶剂质量的影响,排除体积,流体动力学耦合之间的关系。珠子,以及聚合物键的有限延展性。我们得出结论,排除的体积效应是聚合物溶液中剪切稀化的主要原因。比较半挠性链的行为,我们发现与挠性情况相比,回转半径的波动得到了抑制。剪切变稀更大,并且随着刚性的增加,粘度的测量结果趋于于多珠棒的粘度测量。 (c)2006年美国物理研究所。

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