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剪切流中粗糙胶体的流变状态图

Rheological State Diagrams for Rough Colloids in Shear Flow.

作者信息

Hsiao Lilian C, Jamali Safa, Glynos Emmanouil, Green Peter F, Larson Ronald G, Solomon Michael J

机构信息

Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, North Carolina 27695, USA.

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

Phys Rev Lett. 2017 Oct 13;119(15):158001. doi: 10.1103/PhysRevLett.119.158001. Epub 2017 Oct 11.

Abstract

To assess the role of particle roughness in the rheological phenomena of concentrated colloidal suspensions, we develop model colloids with varying surface roughness length scales up to 10% of the particle radius. Increasing surface roughness shifts the onset of both shear thickening and dilatancy towards lower volume fractions and critical stresses. Experimental data are supported by computer simulations of spherical colloids with adjustable friction coefficients, demonstrating that a reduction in the onset stress of thickening and a sign change in the first normal stresses occur when friction competes with lubrication. In the quasi-Newtonian flow regime, roughness increases the effective packing fraction of colloids. As the shear stress increases and suspensions of rough colloids approach jamming, the first normal stresses switch signs and the critical force required to generate contacts is drastically reduced. This is likely a signature of the lubrication films giving way to roughness-induced tangential interactions that bring about load-bearing contacts in the compression axis of flow.

摘要

为了评估颗粒粗糙度在浓胶体悬浮液流变现象中的作用,我们制备了表面粗糙度长度尺度变化范围高达颗粒半径10%的模型胶体。表面粗糙度的增加使剪切增稠和剪胀的起始点向更低的体积分数和临界应力方向移动。实验数据得到了具有可调摩擦系数的球形胶体计算机模拟结果的支持,表明当摩擦与润滑相互竞争时,增稠起始应力降低且第一法向应力出现符号变化。在准牛顿流 regime 中,粗糙度增加了胶体的有效堆积分数。随着剪切应力增加且粗糙胶体悬浮液接近堵塞状态,第一法向应力改变符号,产生接触所需的临界力急剧降低。这可能是润滑膜让位于粗糙度诱导的切向相互作用的一个标志,这种相互作用在流动的压缩轴上产生承载接触。

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