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首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >New insights on fumed colloidal rheology-shear thickening and vorticity-aligned structures in flocculating dispersions
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New insights on fumed colloidal rheology-shear thickening and vorticity-aligned structures in flocculating dispersions

机译:絮凝分散体中气相胶体流变-剪切增稠和涡度排列结构的新见解

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摘要

We investigate the rheology of dilute dispersions of fumed colloidal particles with attractive interactions in hydrocarbon liquids. Surprisingly, these systems display shear thickening due to the breakdown of densified flocs and a concomitant increase in the effective volume fraction of the fractal particles in the fluid. We show that this shear thickening is controlled by a critical stress and accompanied by a positive increase in the first normal stress difference, N-1, at the shear thickening transition. This is in contrast to the well-known hydrocluster mechanism of shear thickening in concentrated hard-sphere and repulsive systems. Gel elasticity depends strongly on the stress applied to suspensions in preshear, scaling roughly as G' similar to sigma(2)(preshear center dot). We propose a simple model to account for these results in terms of the cluster number density determined by the preshear stress. At low shear rates, vorticity-aligned aggregates are present at (gamma) over dot approximate to 10(0) s(-1). In this regime, the system displays a small but noticeable increase in viscosity on increasing shear rate. We investigate the effect of tool roughness and find that wall slip is not responsible for the observed phenomena. Instead, the increase in the apparent viscosity results from increased flow resistance due to the presence of gap-spanning log-like flocs in rolling flow.
机译:我们调查了气相胶体中具有吸引力的相互作用的气相胶体颗粒的稀分散体的流变学。出人意料的是,由于致密絮凝物的分解以及流体中分形颗粒的有效体积分数的增加,这些系统显示出剪切增稠。我们表明,这种剪切增厚受到临界应力的控制,并伴随着在剪切增厚过渡过程中第一法向应力差N-1的正增大。这与在集中的硬球和排斥系统中剪切增厚的众所周知的水力聚类机理相反。凝胶弹性在很大程度上取决于施加于预剪切悬浮液的应力,大致按G'比例缩放,类似于sigma(2)(预剪切中心点)。我们提出了一个简单的模型,根据预剪切应力确定的簇数密度来解释这些结果。在低剪切速率下,在大约10(0)s(-1)的点上的(γ)处出现与涡度对齐的聚集体。在这种情况下,随着剪切速率的增加,系统显示出很小但明显的粘度增加。我们调查了刀具粗糙度的影响,发现壁滑与观察到的现象无关。相反,表观粘度的增加是由于在轧制流中存在间隙跨越的对数状絮状物而导致的流动阻力增加。

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