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首页> 外文期刊>Journal of Colloid and Interface Science >Influence of magnetic interactions between clusters on particle orientational characteristics and viscosity of a colloidal dispersion composed of ferromagnetic spherocylinder particles: Analysis by means of mean field approximation for a simple shear
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Influence of magnetic interactions between clusters on particle orientational characteristics and viscosity of a colloidal dispersion composed of ferromagnetic spherocylinder particles: Analysis by means of mean field approximation for a simple shear

机译:团簇之间的磁性相互作用对铁磁球体颗粒组成的胶体分散体的颗粒取向特性和粘度的影响:简单剪切的平均场近似分析

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摘要

We have theoretically investigated the particle orientational distribution and viscosity of a dense colloidal dispersion composed of ferromagnetic spherocylinder particles under an applied magnetic field. The mean field approximation has been applied to take into account the magnetic interactions of the particle of interest with the other ones that belong to the neighboring clusters, besides those that belong to its own cluster. The basic equation of the orientational distribution function, which is an integrodifferential equation, has approximately been solved by Galerkin's method and the method of successive approximation. Some of the main results obtained here are summarized as follows. Even when the magnetic interaction between particles is of the order of the thermal energy, the effect of particle-particle interactions on the orientational distribution comes to appear more significant with increasing volumetric fraction of particles; the orientational distribution function exhibits a sharper peak in the direction nearer to the magnetic field one as the volumetric fraction increases. Such a significant inclination of the particle in the field direction induces the large increase in viscosity in the range of larger values of the volumetric fraction. The above-mentioned characteristics of the orientational distribution and viscosity come to appear more significantly when the influence of the applied magnetic field is not so strong compared with that of magnetic particle-particle interactions. (c) 2005 Elsevier Inc. All rights reserved.
机译:从理论上讲,我们研究了在磁场作用下由铁磁球圆柱体颗粒组成的致密胶体分散体的颗粒取向分布和粘度。已应用平均场近似法来考虑目标粒子与属于相邻簇的其他粒子(属于属于自己的簇的粒子)之间的磁相互作用。定向分布函数的基本方程是一个积分微分方程,已通过Galerkin方法和逐次逼近法近似求解。此处获得的一些主要结果总结如下。即使当粒子之间的磁相互作用约为热能时,随着粒子体积分数的增加,粒子间相互作用对取向分布的影响也变得更加明显。随着体积分数的增加,取向分布函数在靠近磁场一的方向上呈现出更尖锐的峰。粒子在场方向上的这种显着倾斜引起在体积分数的较大值范围内的粘度的大幅增加。当施加的磁场的影响不如磁性颗粒-颗粒相互作用时,取向分布和粘度的上述特征变得更加明显。 (c)2005 Elsevier Inc.保留所有权利。

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