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Interface instabilities and chaotic rheological responses in binary polymer mixtures under shear flow

机译:剪切流下二元聚合物混合物的界面不稳定性和混沌流变响应

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摘要

unified model by combining the Rolie-Poly constitutive model and the Flory-Huggins mixing free energy functional through a two fluid approach is presented for studying flow-induced phase separation in polymer mixtures. It is numerically solved in two-dimensional flow with monotonic and non-monotonic constitutive behaviour. The results are analyzed and show that this model can capture the essential dynamic features of viscoelastic phase separation reported in literature. The steady-state shear-banding and interface instabilities are reproduced. In the case with a non-monotonic constitutive behaviour, It is observed that the band structures are strongly unstable both in time and in space. The correlations between the microstructure evolution and chaotic rheological responses have been identified. A vortex structure emerges within the central band. Numerical results obtained from this study suggest that the dynamic features of rheochaos can be captured by the proposed model without introducing extra parameters.
机译:提出了通过将Rolie-Poly本构模型与Flory-Huggins通过两种流体方法混合的自由能功能相结合的统一模型,以研究聚合物混合物中流致相分离。在具有单调和非单调本构特性的二维流动中以数值方式求解。分析结果表明,该模型可以捕获文献报道的粘弹性相分离的基本动力学特征。再现了稳态剪切带和界面不稳定性。观察到在非单调本构行为的情况下,带结构在时间和空间上都非常不稳定。已经确定了微观结构演变与混沌流变响应之间的相关性。涡旋结构出现在中心带内。从这项研究获得的数值结果表明,所提出的模型可以捕获流变动力学的动态特征,而无需引入额外的参数。

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