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Modeling the viscoelastic response of suspension of particles in polymer solution: The effect of polymer-particle interactions

机译:建模聚合物溶液中颗粒悬浮液的粘弹性响应:聚合物-颗粒相互作用的影响

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摘要

A conceptual model is proposed for the viscoelastic response of dilute polymer solutions containing well-dispersed low volume fraction spherical particles. The equilibrium structure of the reversibly adsorbed polymer layer on the particle surface was characterized by a scaling theory. The dynamics of the polymer chains were studied by a Maxwell type kinetic model. At the limit of small particle size, our results show that the monomer-filler energetic affinity, particle volume fraction and surface friction strongly affect the overall viscoelastic response of the filled solutions and lead to unusual viscoelastic properties that have been observed experimentally. These properties include a dramatic increase in shear viscosity, intense shear thinning, and solid-like behavior at low frequency domains.
机译:提出了一个概念模型,用于包含分散良好的低体积分数球形颗粒的稀聚合物溶液的粘弹性响应。颗粒表面上可逆吸附的聚合物层的平衡结构通过定标理论表征。通过Maxwell型动力学模型研究了聚合物链的动力学。在小粒径的极限下,我们的结果表明,单体-填充剂的高能亲和力,颗粒体积分数和表面摩擦力强烈影响填充溶液的整体粘弹性响应,并导致实验观察到的异常粘弹性。这些特性包括剪切粘度的显着提高,强烈的剪切稀化和低频域的类固体行为。

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