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首页> 外文期刊>Journal of neurosurgical sciences >Mechanism of shear thickening in suspensions of rigid spheres in Boger fluids. Part I: Dilute suspensions
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Mechanism of shear thickening in suspensions of rigid spheres in Boger fluids. Part I: Dilute suspensions

机译:博格液中刚性球囊悬架中剪切增厚机理。 第一部分:稀释悬浮液

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摘要

The mechanism for shear thickening of the viscometric functions of rigid non-Brownian sphere suspensions in highly elastic fluids is studied numerically. Particular focus is placed on the particle-induced fluid stress, which is the dominant contribution to the shear thickening behavior, especially at moderate to high Weissenberg numbers. We determine the Weissenberg number scaling for both the magnitude of the particle-induced fluid stress and the volume containing most of the particle-induced fluid stress to understand the overall suspension behavior at moderate Weissenberg numbers. Furthermore, we analyze the flow type in the regions of significant polymer-induced fluid stress and find that the stretch of polymers in strain-dominated flow within closed streamlines around the particles generates the large stresses that contribute to the thickening behavior. Thus, understanding the response of the suspending fluid to extensional deformation is important for predicting the shear rheology of the bulk suspension. Lastly, we explore the effect of polymer viscosity and polymer extensibility on the behavior of the particle-induced fluid stress. (C) 2018 The Society of Rheology.
机译:在数值上研究了强度弹性流体中刚性非褐色球体悬浮液的粘接函数的粘性增厚的机理。特别重点放在粒子诱导的流体应力上,这是对剪切增稠行为的显着贡献,尤其是中度至高卫生伯格数。我们确定粒子诱导的流体应力的幅度和含有大多数颗粒诱导的流体胁迫的体积的Weissenberg数缩放,以了解中度Weissenberg数字的整体悬浮行为。此外,我们分析了显着的聚合物诱导的流体应力区域中的流动类型,并发现颗粒周围的封闭流线内的应变束缚流中的聚合物的延伸产生了有助于增厚行为的大应力。因此,了解悬浮液与延伸变形的响应对于预测散装悬浮液的剪切流变是重要的。最后,我们探讨了聚合物粘度和聚合物可伸展性对颗粒诱导的流体应力的行为的影响。 (c)2018年流变学会。

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