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微观尺度上的凝胶化。

Gelation on the microscopic scale.

作者信息

Oppong Felix K, Coussot P, de Bruyn John R

机构信息

Department of Physics and Astronomy, University of Western Ontario, London, Ontario, Canada N6A 3K7.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2008 Aug;78(2 Pt 1):021405. doi: 10.1103/PhysRevE.78.021405. Epub 2008 Aug 26.

Abstract

Particle-tracking methods are used to study gelation in a colloidal suspension of Laponite clay particles. We track the motion of small fluorescent polystyrene spheres added to the suspension, and obtain the micron-scale viscous and elastic moduli of the material from their mean-squared displacement. The fluorescent spheres move subdiffusively due to the microstructure of the suspension, with the diffusive exponent decreasing from close to one at early times to near zero as the material gels. The particle-tracking data show that the system becomes more heterogeneous on the microscopic scale as gelation proceeds. We also determine the bulk-scale moduli using small-amplitude oscillatory shear rheometry. Both the macroscopic and microscopic moduli increase with time, and on both scales we observe a transition from a primarily viscous fluid to an elastic gel. We find that the gel point, determined as the time at which the viscous and elastic moduli are equal, is length-scale dependent--gelation occurs earlier on the bulk scale than on the microscopic scale.

摘要

粒子追踪方法被用于研究锂皂石粘土颗粒胶体悬浮液中的凝胶化过程。我们追踪添加到悬浮液中的小荧光聚苯乙烯球体的运动,并从它们的均方位移获得材料的微米级粘性和弹性模量。由于悬浮液的微观结构,荧光球体呈亚扩散运动,随着材料凝胶化,扩散指数从早期接近1减小到接近0。粒子追踪数据表明,随着凝胶化的进行,系统在微观尺度上变得更加不均匀。我们还使用小振幅振荡剪切流变仪测定了宏观尺度的模量。宏观和微观模量都随时间增加,并且在两个尺度上我们都观察到从主要为粘性流体到弹性凝胶的转变。我们发现,确定为粘性和弹性模量相等时的凝胶点与长度尺度有关——凝胶化在宏观尺度上比在微观尺度上更早发生。

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