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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Nonlinear rheology of dense colloidal dispersions: A phenomenological model and its connection to mode coupling theory
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Nonlinear rheology of dense colloidal dispersions: A phenomenological model and its connection to mode coupling theory

机译:稠密胶体分散体的非线性流变学:现象学模型及其与模式耦合理论的联系

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摘要

Rheological properties, especially 'shear-thinning', of dense colloidal dispersions are discussed on three different levels. A generalized phenomonological Maxwell model gives a broad framework connecting glassy dynamics to the linear and non-linear theology of dense amorphous particle solutions. First principles mode coupling theory calculations for the time or frequency dependent shear modulus give quantitative results for dispersions of hard colloidal spheres in the linear regime. Schematic models extending mode coupling theory to the non-linear regime recover the phenomenology of the generalized Maxwell model, and predict universal features of flow curves, stress versus shear-rate. (c) 2005 Elsevier B.V. All rights reserved.
机译:稠密胶体分散体的流变性质,尤其是“变稀”,在三个不同的水平上进行了讨论。广义的现象学麦克斯韦模型提供了一个宽泛的框架,该框架将玻璃动力学与稠密无定形颗粒溶液的线性和非线性神学联系起来。基于时间或频率的剪切模量的第一原理模态耦合理论计算给出了线性系统中硬胶体球分散的定量结果。将模式耦合理论扩展到非线性状态的示意图模型可以恢复广义Maxwell模型的现象,并预测流动曲线,应力与剪切速率的通用特征。 (c)2005 Elsevier B.V.保留所有权利。

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