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用于测量载有表面活性剂液滴界面张力的液滴回缩方法的计算流体动力学评估。

CFD evaluation of drop retraction methods for the measurement of interfacial tension of surfactant-laden drops.

作者信息

Velankar Sachin, Zhou Hua, Jeon Hyun Kyoung, Macosko Christopher W

机构信息

Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

J Colloid Interface Sci. 2004 Apr 1;272(1):172-85. doi: 10.1016/j.jcis.2003.09.030.

Abstract

Drop retraction methods are popular means of measuring the interfacial tension between immiscible polymers. Experiments show that two different drop retraction methods, imbedded fiber retraction (IFR) and deformed drop retraction (DDR), give inconsistent results when a surfactant is present on the surface of the drop. These inconsistencies are deemed to be due to dilution of the surfactant and due to gradients in interfacial concentration of surfactant along the drop surface. This physical picture is quantified for the simple case of a Newtonian drop in a Newtonian matrix, with an insoluble, nondiffusive surfactant at the interface. The drop is deformed in computational fluid dynamics simulations by shearing the matrix, and then allowed to retract. Dilution and interfacial tension gradients effects are found to be especially large at the early stages of retraction, making IFR unsuitable for measuring the interfacial tension of surfactant-laden interfaces. The effects of surfactant dilution and gradients are found to persist even at late stages of retraction, causing the DDR method to underestimate the equilibrium interfacial tension significantly. The largest underestimates occur when the drop viscosity is lower than the matrix viscosity.

摘要

液滴回缩法是测量互不相溶聚合物之间界面张力的常用方法。实验表明,当液滴表面存在表面活性剂时,两种不同的液滴回缩法,即嵌入式纤维回缩法(IFR)和变形液滴回缩法(DDR),会给出不一致的结果。这些不一致被认为是由于表面活性剂的稀释以及沿液滴表面的表面活性剂界面浓度梯度所致。对于牛顿基质中牛顿液滴的简单情况,在界面处有不溶性、非扩散性表面活性剂时,对这种物理图像进行了量化。在计算流体动力学模拟中,通过剪切基质使液滴变形,然后使其回缩。发现稀释和界面张力梯度效应在回缩的早期阶段特别大,这使得IFR不适用于测量含有表面活性剂的界面的界面张力。即使在回缩的后期阶段,表面活性剂稀释和梯度的影响仍然存在,导致DDR方法显著低估平衡界面张力。当液滴粘度低于基质粘度时,低估程度最大。

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