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Development of fibrillar morphology in immiscible PP/PS blends under shear flow

机译:剪切流下不混溶PP / PS共混物中原纤维形态的发展

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摘要

The formation dynamics of fibrillar morphology in dilute immiscible polypropylene (PP)/polystyrene blends under simple shear flow is investigated using optical-shear technique. Two strategies in generating fibrillar droplets under shear flow, namely temperature quench and shear jump, are studied. It is found that the shear-induced deformation of PP droplets is closely related to the total shear strain and changes of rheological properties of components during the temperature quench or shear-jump process. The shape evolution of fibrillar droplets under shear flow displays large deviation to the prediction of affine deformation theory based on Newtonian fluids and that of three deformation models, which consider the viscoelastic properties of components. The possible effect of droplet coalescence, breakup, and interfacial slip on the deviation between the experimental data and the prediction values for droplet deformation are discussed.
机译:使用光学剪切技术研究了在简单剪切流下稀的不混溶聚丙烯(PP)/聚苯乙烯共混物中原纤维形态的形成动力学。研究了在剪切流下产生纤维状液滴的两种策略,即温度骤冷和剪切跳变。发现在温度骤冷或剪切跳跃过程中,PP液滴的剪切诱导变形与总剪切应变和组分流变特性的变化密切相关。纤维状液滴在剪切流下的形状演化与基于牛顿流体的仿射变形理论的预测以及考虑了组分的粘弹性的三个变形模型的预测相比,显示出较大的偏差。讨论了液滴聚结,破裂和界面滑移对实验数据与液滴变形预测值之间偏差的可能影响。

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