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Nonlinear Rheology and Flow-Induced Structure in a Concentrated Spherical Silica Suspension (FUNDAMENTAL MATERIAL PROPERTIES-Molecular Rheology)

机译:浓球形二氧化硅悬浮液的非线性流变学和流动诱导结构(基本材料性能-分子流变学)

摘要

In hard-sphere suspensions of solid particles, the stress has the Brownian (thermodynamic) and hydrodynamic components σB and σH, the former reflecting the anisotropy of the particle distribution while the latter being determined by the hydrodynamic interaction between the particles. These two components exhibit nonlinearities under steady shear flow with different mechanisms. The nonlinearity of σB results from the particle distribution insensitive to the shear rate, while σH becomes nonlinear due to flowinduced clustering of the particles. These structural origins of the nonlinearities were confirmed from flow-SANS experiments.
机译:在固体颗粒的硬球悬浮液中,应力具有布朗(热力学)分量和流体力学分量σB和σH,前者反映了颗粒分布的各向异性,而后者则由颗粒之间的流体相互作用决定。这两个分量在稳态剪切流下以不同的机理表现出非线性。 σB的非线性是由对剪切速率不敏感的颗粒分布引起的,而σH由于颗粒的流致聚集而变为非线性。非线性的这些结构起源已通过流-SANS实验得到证实。

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