Shear induced demixing in bidisperse and polydisperse polymer blends: Predictions from a multifluid model

J. Peterson, G. Fredrickson, L. Gary Leal
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引用次数: 8

Abstract

In light of recent advancements in the constitutive modelling of bidisperse and polydisperse entangled linear polymers, we present a new multi fluid generalization of the classic two fluid approximation for flows of inhomogeneous polymer blends. As an application of the model, we consider predictions for the linear and nonlinear dynamics of shear induced demixing (SID) instabilities in blends with bidisperse and lognormal molecular weight distributions. We find that even in the absence of any chemical contrast between component chains, an imposed flow can induce a demixing instability provided there is sufficient contrast in the size of the two chains. The lower bound polydispersity for SID coincides with the point where elastic forces (kT per entanglement) scaled by the contrast between chains (e.g. polydispersity index minus one) exceed the entropic forces for mixing (kT per chain). For bi-disperse blends, we show that the non-linear dynamics of SID strongly resemble what has previously been shown for SID in entangled polymer solutions.
双分散和多分散聚合物共混物中的剪切诱导脱混:来自多流体模型的预测
鉴于双分散和多分散纠缠线性聚合物本构模型的最新进展,我们对非均质聚合物共混流动的经典双流体近似提出了一种新的多流体推广。作为该模型的应用,我们考虑了双分散和对数正态分子量分布的共混物中剪切诱导脱混(SID)不稳定性的线性和非线性动力学预测。我们发现,即使在组分链之间没有任何化学对比的情况下,只要两条链的大小有足够的对比,施加的流动也会引起脱混不稳定性。SID的下限多分散性与由链之间的对比(例如,多分散性指数- 1)缩放的弹性力(每纠缠kT)超过混合熵力(每链kT)的点相一致。对于双分散共混物,我们表明SID的非线性动力学非常类似于先前在纠缠聚合物溶液中显示的SID。
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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