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Modeling nonlinear rheology of unentangled polymer melts based on a single integral constitutive equation

机译:基于单积分组成型方程的未触控聚合物熔体建模非线性流变学

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The experimental data of Matsumiya et al. [Macromolecules 51, 9710-9729 (2018)] for start-up and the steady-state elongational flow of monodisperse unentangled polystyrene PS27k and poly(p-tert-butylstyrene) PtBS53k melts are analyzed based on the relaxation spectrum of the Rouse model and a single integral constitutive equation. As shown by Lodge and Wu [Rheol. Acta 10, 539-553 (1971)], the stress tensor of the Rouse model is equivalent to the rubberlike-liquid constitutive equation, and the relaxation modes of Rouse chains can be represented by an ensemble of virtual viscoelastic “strands” with relaxation times and creation rates. Instead of the affine deformation hypothesis, we assume that due to the flow, strands are oriented and stretched. The use of a history integral avoids preaveraging of orientation and stretch. Stretch is limited by a finite conformational stretch parameter. We find good agreement between model predictions and experimental data for start-up and the steady-state elongational flow of melts PS27k and PtBS53k and qualitative agreement with stress-relaxation after the stop of elongation. Extension-thickening and extension-thinning observed are caused by finite chain stretch in combination with strand orientation. The model predicts a scaling exponent for high Weissenberg number elongational flows of η_E ∝ Wi~(-1/2) in agreement with experimental evidence. The same scaling exponent was observed and predicted earlier for high Weissenberg number shear flows [R. Colby et al., Rheol. Acta, 46, 569-575 (2007)], and we show that the steady-shear data of unentangled polystyrene melts are in nearly quantitative agreement with model prediction assuming only the orientation of strands in the shear flow with no stretch.
机译:Matsumiya等人的实验数据。 [Macromolezules 51,9710-9729(2018)]用于启动和单分散未造成的聚苯乙烯PS27K和聚(P-叔丁烯苯乙烯)PTBS53K熔体的稳态延长流动,基于rouse模型的弛豫谱分析单一积分本构方程。如Lodge和Wu [Rheol所示。 Acta 10,539-553(1971)],唤醒模型的应力张量相当于橡胶状液组成方程,并且可以通过虚拟粘弹性“股线”的集合来表示振荡链的弛豫模式,弛豫时间和创造率。除了仿射变形假设中,我们假设由于流动,股线取向并拉伸。使用历史积分避免了取向和拉伸的术语。伸展受限于有限构象拉伸参数限制。我们在初始预测和熔体PS27K和PTBS53K的稳态伸缩流程和PTBS53K的稳态伸缩流程之间找到了良好的一致性,并且在伸长率后与应力松弛进行定性协议。观察到的延伸增厚和延伸减薄是由有限链伸展与链轴取向组合引起的。该模型在与实验证据一致的η_eαwi〜(-1/2)的高Weissenberg编号伸长流动的缩放指数。观察到相同的扩展指数,并预测高温Weissenberg数剪切流量[R. COLBY等人。,Rheol。 Acta,46,569-575(2007)],我们表明,假设只有剪切流动中的股线的方向,不受模型预测的稳定剪切数据与模型预测几乎定量的协议。

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