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剪切作用下双峰浓缩悬浮液的最低粘度

Viscosity minimum in bimodal concentrated suspensions under shear.

作者信息

Núñez A, Darias R, Pinto R, Paredes V R, Medina E

机构信息

Laboratorio de Física Estadística de Sistemas Desordenados, Centro de Física, IVIC, Apartado 21827, Caracas 1020A, Venezuela.

出版信息

Eur Phys J E Soft Matter. 2002 Nov;9(4):327-34. doi: 10.1140/epje/i2002-10066-4.

Abstract

We study a model of concentrated suspensions under shear in two dimensions. Interactions between suspended particles are dominated by direct-contact viscoelastic forces and the particles are neutrally bouyant. The bimodal suspensions consist of a variable proportion between large and small droplets, with a fixed global suspended fraction. Going beyond the assumptions of the classical theory of Farris (R.J. Farris, Trans. Soc. Rheol. 12, 281 (1968)), we discuss a shear viscosity minimum, as a function of the small-to-large-particle ratio, in shear geometries imposed by external body forces and boundaries. Within a linear-response scheme, we find the dependence of the viscosity minimum on the imposed shear and the microscopic drop friction parameters. We also discuss the viscosity minimum under dynamically imposed shear applied by boundaries. We find a reduction of macroscopic viscosity with the increase of the microscopic friction parameters that is understood using a simple two-drop model. Our simulation results are qualitatively consistent with recent experiments in concentrated bimodal emulsions with a highly viscous or rigid suspended component.

摘要

我们研究了二维剪切作用下浓悬浮液的模型。悬浮颗粒之间的相互作用主要由直接接触粘弹力主导,且颗粒呈中性浮力。双峰悬浮液由大小液滴之间可变的比例组成,具有固定的全局悬浮分数。超越了经典的法里斯理论(R.J. Farris,《流变学学会会刊》12,281(1968))的假设,我们讨论了在由外力和边界施加的剪切几何形状中,作为小颗粒与大颗粒比例函数的剪切粘度最小值。在线性响应框架内,我们发现了粘度最小值对施加剪切力和微观液滴摩擦参数的依赖性。我们还讨论了由边界动态施加剪切力时的粘度最小值。我们发现随着微观摩擦参数的增加,宏观粘度降低,这可以用一个简单的双液滴模型来理解。我们的模拟结果与最近在具有高粘性或刚性悬浮成分的浓双峰乳液中的实验定性一致。

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