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首页> 外文期刊>Journal of Rheology >The effects of interparticle interactions and particle size on reversible shear thickening: Hard-sphere colloidal dispersions
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The effects of interparticle interactions and particle size on reversible shear thickening: Hard-sphere colloidal dispersions

机译:颗粒间相互作用和粒径对可逆剪切增稠的影响:硬球胶体分散体

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摘要

A comparison between the effects of two colloidal stabilizing methods (electrostatic versus Brownian) on the reversible shear thickening transition in concentrated colloidal suspensions is explored. Five suspensions of monodisperse silica are synthesized via the Stober synthesis and dispersed in an index matched organic solvent to minimize van der Waals interactions. The residual surface charge is neutralized with nitric acid (c_(HNO_3) ≈ 0.1 M) resulting in a near hard-sphere interaction that is confirmed by small angle neutron scattering measurements across a range of volume fractions. Rheological measurements demonstrate the effects of neutralization on the low shear and high shear rheology, which show that the onset of shear thickening moves to lower applied shear stresses and scales inversely with particle size cubed, in agreement with theory. Quantitative comparisons of both the low shear viscosity and the critical stress for shear thickening to predictions for hard spheres and literature data demonstrate the extreme sensitivity of high shear rheology to the surface properties in concentrated suspensions.
机译:探索了两种胶体稳定方法(静电与布朗尼)对浓缩胶体悬浮液中可逆剪切增稠转变的影响之间的比较。通过Stober合成法合成了五种单分散二氧化硅悬浮液,并将其分散在折射率匹配的有机溶剂中,以最大程度地减少范德华相互作用。残留的表面电荷用硝酸(c_(HNO_3)≈0.1 M)中和,从而产生近乎硬球的相互作用,这可通过在一定体积分数范围内进行小角度中子散射测量来证实。流变学测量表明中和对低剪切流变和高剪切流变的影响,这表明剪切增稠开始向较低的施加剪切应力移动,并且与立方粒径成反比,与理论相反。低剪切粘度和剪切增稠的临界应力与硬球的预测之间的定量比较和文献数据表明,高剪切流变学对浓缩悬浮液的表面特性极为敏感。

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