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Effects of particle dimension and matrix viscosity on the colloidal aggregation in weakly interacting polymer-nanoparticle composites: a linear viscoelastic analysis

机译:颗粒尺寸和基体粘度对弱相互作用的聚合物-纳米颗粒复合材料中胶体聚集的影响:线性粘弹性分析

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摘要

We investigate the relation between structure and viscoelasticity of model polymer nanocomposite systems based on a mixture of spherical nanopar-ticles and different polymer matrices. When Brownian motions become relevant, the composites exhibit a strong time dependence of the linear visoelastic moduli, which is indicative of the three-dimensional structuring of the filler in the melt polymer. Despite the complexity of the rheological response, we show that the viscoelasticity of the samples can be rationalized by splitting it into the independent responses of the "viscous" suspending polymer melt and that of the "elastic" particle network. Besides underlying the similarities between polymer-based nanocomposites and Newtonian colloidal suspensions, our analysis is expected to be useful for understanding the behavior of other complex fluids where the elasticity of the components may be superimposed.
机译:我们研究了基于球形纳米粒子和不同聚合物基质的混合物的模型聚合物纳米复合材料系统的结构与粘弹性之间的关系。当布朗运动变得重要时,复合材料表现出强烈的时间线性粘弹性模量依赖性,这表明熔融聚合物中填料具有三维结构。尽管流变响应很复杂,但我们表明,可以通过将样品分为“粘性”悬浮聚合物熔体和“弹性”颗粒网络的独立响应,来合理化样品的粘弹性。除了潜在的基于聚合物的纳米复合材料和牛顿胶体悬浮液之间的相似性之外,我们的分析还有望有助于理解其他复杂流体的行为,其中组分的弹性可能会叠加。

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