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用于具有干扰尺寸比的刚性双峰尺寸颗粒悬浮液的基于拥挤的流变模型。

Crowding-based rheological model for suspensions of rigid bimodal-sized particles with interfering size ratios.

作者信息

Faroughi Salah Aldin, Huber Christian

机构信息

Department of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332, USA and Department of Earth and Atmospheric Sciences, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Nov;90(5-1):052303. doi: 10.1103/PhysRevE.90.052303. Epub 2014 Nov 14.

Abstract

We present a crowding-based model to predict the shear viscosity of suspensions of rigid bimodal-sized particles. In this model, the mutual crowding factor is defined to explicitly account for the change in the amount of fluid trapped in the interstices formed by particles upon mixing particles with two different sizes. Through this factor, we cancel the effect of size interference by mapping the bimodal suspensions to a suspension of noninterfering size ratio. This approach provides a set of decorrelated particle fractions that depend on crowding and size distribution. The shear viscosity of the resultant suspension is then directly estimated based on the viscosity of corrected components using a stiffening function that accounts for the self-crowding in each size class individually. We tested the proposed model against published experiments over a wide range of particle volume fractions, and we observe an excellent agreement.

摘要

我们提出了一种基于拥挤效应的模型,用于预测刚性双峰尺寸颗粒悬浮液的剪切粘度。在该模型中,相互拥挤因子的定义明确考虑了将两种不同尺寸的颗粒混合时,颗粒间孔隙中截留的流体量的变化。通过这个因子,我们通过将双峰悬浮液映射到具有非干扰尺寸比的悬浮液,消除了尺寸干扰的影响。这种方法提供了一组与颗粒分数无关的量,这些量取决于拥挤效应和尺寸分布。然后,使用一个分别考虑每个尺寸类中自拥挤效应的硬化函数,根据校正组分的粘度直接估算所得悬浮液的剪切粘度。我们在广泛的颗粒体积分数范围内,将所提出的模型与已发表的实验进行了对比测试,观察到了极佳的一致性。

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