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Nonlinear Rheology of Unentangled Polymer Melts Reinforced with High Concentration of Rigid Nanoparticles

机译:高浓度刚性纳米粒子增强的纠缠聚合物熔体的非线性流变学

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摘要

A scaling model is presented to analyze the nonlinear rheology of unentangled polymer melts filled with high concentration of small spherical particles. Assuming the majority of chains to be reversibly adsorbed to the surface of the particles, we show that the emergence of nonlinearity in the viscoelastic response of the composite system subjected to a 2D shear flow results from stretching of the adsorbed chains and increasing desorption rate of the adsorbed segments due to the imposed deformation. The steady-state shear viscosity of the mixture in nonlinear shear thinning regime follows the power lawwhereis the applied shear rate. At large strain amplitude γ 0, the storage and loss moduli in strain sweep tests scale asandrespectively.
机译:提出了缩放模型,以分析充满高浓度小球形颗粒的未缠结聚合物熔体的非线性流变学。假设大多数链被可逆地吸附到颗粒表面,我们表明受到二维剪切流作用的复合材料系统的粘弹性响应中非线性的出现是由于吸附链的拉伸和吸附链解吸速率的提高造成的。由于施加的变形而吸附段。在非线性剪切稀化状态下,混合物的稳态剪切粘度服从幂定律,而所施加的剪切速率。在大应变振幅γ0时,应变扫描测试中的储能模量和损耗模量分别成比例。

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