Structural Transitions in Sheared Electrically Stabilized Colloidal Crystals

J. Kaldasch, B. Senge, J. Laven
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引用次数: 1

Abstract

A Landau theory is presented for the structural transition of electrically stabilized colloidal crystals under shear. The model suggests that a structural transition from an ordered layered colloidal crystal into a disordered structure occurs at a critical shear stress. The shear induced structural transition is related to a change of the rheological properties caused by the variation of the microstructure which can be verified by scattering experiments. The theory is used to establish the shape of the flow curves. A good qualitative agreement with experimental results can be achieved, while a scaling relation similar to the elastic scaling is established.
剪切电稳定胶体晶体的结构转变
提出了电稳定胶体晶体在剪切作用下结构转变的朗道理论。该模型表明,在临界剪切应力下,由有序层状胶体晶体向无序结构转变。剪切诱导的结构转变与微观结构的变化引起的流变特性的变化有关,这可以通过散射实验来验证。该理论被用来建立流动曲线的形状。定性分析结果与实验结果吻合较好,并建立了类似于弹性尺度的尺度关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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