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Effects of a surfactant monolayer on the measurement of equilibrium interfacial tension of a drop in extensional flow

机译:表面活性剂单层对拉伸流下降的平衡界面张力测量的影响

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摘要

The effect of surfactant monolayer concentration on the measurement of interfacial surface tension using transient drop deformation methods is studied using the Boundary Integral Method. Emulsion droplets with a surfactant monolayer modeled with the Langmuir equation of state initially in equilibrium are suddenly subjected to axisymmetric extensional flows until a steady-state deformation is reached. The external flow is then removed and the retraction of the drops to a spherical equilibrium shape in a quiescent state is simulated. The transient response of the drop to the imposed flow is analyzed to obtain a characteristic response time, τs. Neglecting the initial and final stages, the retraction process can be closely approximated by an exponential decay with a characteristic time, τr. The strength of the external flow on each model drop is increased in order to investigate the coupled effect of deformation and surfactant distribution on the characteristic relaxation time. Different model drops are considered by varying the internal viscosity and the equilibrium surfactant concentrations from a surfactant free state (clean) to high concentrations approaching the maximum packing limit. The characteristic times obtained from the simulated drop dynamics both in extension and retraction are used to determine an apparent surface tension employing linear theory. In extension the apparent surface tension under predicts the prescribed equilibrium surface tension. The error increases monotonically with the equilibrium surfactant concnetration and diverges as the maximum packing limit is approached. In retraction the apparent surface tension under predicts the prescribed equilibrium surface tension depends non-monotonically on the equilibrium surfactant concentration. The error is highest for moderate surfantant concentrations and decreases as the maximum packing limit is approached. It was found that the difference between the prescribed surface tension and the apprent surface tension increased as the viscosity ratio decreased. Differences as large as 40% were seen between the prescribed surface tension and the apparent surface tension predicted by the linear theory.
机译:使用边界积分法研究了表面活性剂单层浓度对使用瞬态滴变形法测量界面表面张力的影响。最初由处于平衡状态的Langmuir状态方程建模的具有表面活性剂单层的乳液液滴突然经历轴对称拉伸流,直至达到稳态变形。然后除去外部流动,并模拟液滴在静止状态下退回至球形平衡形状的过程。分析液滴对施加流的瞬态响应,以获得特征响应时间, τ s 。忽略初始阶段和最终阶段,回缩过程可以通过具有特征时间的指数衰减来近似地近似: τ r 。为了研究形变和表面活性剂分布对特征弛豫时间的耦合作用,增加了每个模型滴上的外部流动强度。通过改变内部粘度和平衡表面活性剂的浓度(从无表面活性剂的状态(干净)到接近最大填充极限的高浓度),可以考虑使用不同的模型滴。从线性的拉伸和收缩过程中,从模拟的液滴动力学获得的特征时间被用来通过线性理论确定表观表面张力。进一步地,表观表面张力低于可预测规定的平衡表面张力。该误差随平衡表面活性剂的浓度单调增加,并随着接近最大填充极限而发散。在缩回中,表观表面张力根据预测的规定平衡表面张力非单调地取决于平衡表面活性剂浓度。对于中等浓度的表面活性剂,该误差最高,并且随着接近最大包装极限而减小。发现随着粘度比的降低,规定的表面张力和适当的表面张力之间的差增大。规定的表面张力与线性理论预测的表观表面张力之间的差异高达40%。

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