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Nonlinear Rheological Behavior of a Novel Oil Displacing Agent

机译:一种新型驱油剂的非线性流变行为

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In this work, the shear and elongational rheologies have been investigated for a newly developed oil displacing agent, polymeric surfactant-PSf. It was found that the PSf solutions exhibited Newtonian, shear-thinning, and shear-thickening behavior, respectively, depending on the polymer concentration and shear rate, and Cox-Merz rule was not applicable to these systems. The first normal stress difference (N 1) versus shear rate plots for PSf were complicated, which varied with the composition of the solutions. The uniaxial elongation in capillary breakup experimental results indicated that Exponential model could be used to fit the experimental data of the PSf solutions at lower polymer concentrations. In addition, it was found that PSf was more effective in improving shear viscosity than partially hydrolyzed polyacrylamide, but not in the case of elongational viscosity. The experimental results indicated that the microstructural mechanisms are responsible for the rheological behavior of the polymers.
机译:在这项工作中,已经研究了新开发的驱油剂聚合物表面活性剂-PSf的剪切和伸长流变学。已发现,根据聚合物浓度和剪切速率,PSf溶液分别表现出牛顿,剪切稀化和剪切稠化行为,并且Cox-Merz规则不适用于这些系统。 PSf的第一法向应力差(N 1)与剪切速率的关系图很复杂,随溶液的组成而变化。毛细管破裂的单轴伸长实验结果表明,指数模型可用于拟合较低聚合物浓度下PSf溶液的实验数据。另外,发现PSf在提高剪切粘度方面比部分水解的聚丙烯酰胺更有效,但在伸长粘度的情况下则不是。实验结果表明,微观结构机制是聚合物流变行为的原因。

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