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A Dewetting Model for Double-Emulsion Droplets

机译:双乳液液滴的去湿模型

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摘要

The evolution of double-emulsion droplets is of great importance for the application of microdroplets and microparticles. We study the driving force of the dewetting process, the equilibrium configuration and the dewetting time of double-emulsion droplets. Through energy analysis, we find that the equilibrium configuration of a partial engulfed droplet depends on a dimensionless interfacial tension determined by the three relevant interfacial tensions, and the engulfing part of the inner phase becomes larger as the volume of the outer phase increases. By introducing a dewetting boundary, the dewetting time can be calculated by balancing the driving force, caused by interfacial tensions, and the viscous force. Without considering the momentum change of the continuous phase, the dewetting time is an increasing function against the viscosity of the outer phase and the volume ratio between the outer phase and inner phase.
机译:双乳液液滴的演变对于微滴和微粒的应用非常重要。我们研究了双乳液液滴的去湿过程的驱动力,平衡构型和去湿时间。通过能量分析,我们发现部分被吞没的液滴的平衡构型取决于由三个相关界面张力确定的无量纲界面张力,随着外相体积的增加,内相的被吞噬部分变得更大。通过引入去湿边界,可以通过平衡由界面张力引起的驱动力和粘性力来计算去湿时间。在不考虑连续相的动量变化的情况下,去湿时间是相对于外相的粘度以及外相与内相之间的体积比的增加函数。

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