Domain Structures and Rheological Properties of Immiscible Polymer Blends under Shear Flow in Parallel Plates

Yoshiaki Takahashi, Naoto Imura, Kyoko Miyanishi, S. Kitade, I. Noda
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引用次数: 2

Abstract

Domain structures and rheological properties of immiscible polymer blends composed of components having almost the same viscosities in a parallel-plate (PP) geometry are studied in comparison with those in a cone-plate (CP) geometry. Both steady states and transient states after step increase of shear rate are examined. At steady states. it was confirmed that the domain size becomes smaller inversely proportional to the distance from the center (i.e., shear rate) along the radial direction of PP, consistent with the data in CP compared at the same shear rate. The related rheological data are also consistent. At transient states after the step increase of shear rate, there was no apparent long-range interference in the transient behaviors undergoing in different time scales at different positions along the radial direction of PP. The structure change and the related excess stresses of immiscible polymer blends with the nearly same viscosities under shear flow in PP are consistent with those in the CP geometry.
平行板剪切流动下非混相聚合物共混物的畴结构和流变性能
研究了由具有几乎相同粘度的组分组成的平行板(PP)和锥板(CP)共混物的畴结构和流变性能。对剪切速率阶跃增大后的稳态和暂态进行了研究。在稳定状态下。证实了沿PP径向方向,区域尺寸与距中心的距离(即剪切速率)成反比,与CP在相同剪切速率下的数据一致。相关的流变学数据也是一致的。在剪切速率阶跃增加后的瞬态状态下,PP沿径向不同时间尺度、不同位置的瞬态行为没有明显的长程干扰。PP中黏度相近的非混相聚合物共混物在剪切流作用下的结构变化和相关的超应力与CP几何一致。
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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