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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Apparent wall-slip of colloidal hard-sphere suspensions in microchannel flow
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Apparent wall-slip of colloidal hard-sphere suspensions in microchannel flow

机译:胶态硬球悬浮液在微通道流动中的表观壁滑

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摘要

We investigated the dependence of the apparent slip length (beta) on the particle concentration for suspensions of colloidal hard spheres flowing through microchannels with smooth walls. Hydrostatic pressure was used to pump monodisperse suspensions of 1 mu m silica spheres in water-glycerol mixture through a poly(dimethylsiloxane) microchannel with rectangular cross section. Confocal scanning laser microscopy allowed accurate measurement of velocity profiles via particle tracking velocimetry. Apparent slip lengths were measured by extrapolating the velocity profiles to zero. Systematic variations were made of the particle volume fraction Phi(0.03-0.42) and the Peclet number (2-50). In these regimes the apparent slip length shows a weak dependence on Pe and the slip velocity near the wall grows linearly with shear rate irrespective of Phi. However, beta turns out to increase strongly with Phi, tending toward an asymptotic behavior for Phi 0.3. To explain these observations, we worked out a conceptually simple model, in which the apparent slip is caused by a local reduction in volume fraction due to excluded volume, and the local viscosity is calculated using the Krieger-Dougherty equation. The predictions by this model match the experimental results remarkably well. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们研究了表观滑移长度(β)对胶体硬球悬浮液流经光滑壁微通道的悬浮液颗粒浓度的依赖性。使用静水压力将1微米二氧化硅球在水-甘油混合物中的单分散悬浮液泵送通过具有矩形横截面的聚(二甲基硅氧烷)微通道。共聚焦扫描激光显微镜允许通过粒子跟踪测速仪精确测量速度分布。通过将速度曲线外推到零来测量表观滑移长度。颗粒体积分数Phi(0.03-0.42)和Peclet数(2-50)发生了系统变化。在这些情况下,表观滑移长度显示出对Pe的弱依赖性,并且壁附近的滑移速度随剪切速率线性增长,而与Phi无关。但是,随着Phi的增加,β会显着增加,当Phi 0.3时,β趋于渐近。为了解释这些发现,我们设计了一个概念上简单的模型,其中表观滑动是由于排除体积引起的局部体积分数降低而引起的,并且使用Krieger-Dougherty方程计算了局部粘度。该模型的预测与实验结果非常吻合。 (C)2015 Elsevier B.V.保留所有权利。

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