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首页> 外文期刊>AIChE Journal >Effects of Fluid-Fluid Interfacial Elasticity on Droplet Formation in Microfluidic Devices
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Effects of Fluid-Fluid Interfacial Elasticity on Droplet Formation in Microfluidic Devices

机译:流体界面弹性对微流控装置中液滴形成的影响

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Biomolecules adsorb at fluid-fluid interfaces and can form a cohesive interfacial network imparting distinctive local interfacial mechanics. This modification of interfacial behavior is empirically known to significantly affect the stability and flow behavior of foams and emulsions. Droplet formation in the presence of interfacial networks is investigated in a flow-focusing microfluidic device using designed peptide surfactants, which allow decoupled control of interfacial rheology and interfacial tension. The influence of inteifa-cial elasticity on droplet breakup, satellite droplet formation and droplet size are reported. The presence of high interfacial elasticity strongly affects the mechanism of droplet breakup by delaying neck thinning and altering interfacial shape at the point of droplet detachment, resulting in the suppression of satellite droplet formation and a decrease in droplet size. We report a correlation between dimensionless droplet size and a new dimensionless grouping which combines flow-rate ratio with the ratio of interfacial tension and interfacial elasticity.
机译:生物分子在流体-流体界面处吸附,并可以形成具有粘性的界面网络,从而赋予独特的局部界面力学。根据经验已知这种界面行为的改变会显着影响泡沫和乳液的稳定性和流动行为。使用设计的肽表面活性剂,在流动聚焦的微流体装置中研究了存在界面网络的液滴形成,从而可以对界面流变学和界面张力进行解耦控制。报告了弹性对液滴破裂,卫星液滴形成和液滴尺寸的影响。高界面弹性的存在通过在液滴分离点延迟颈部变细和改变界面形状而强烈影响液滴破裂的机制,从而抑制了卫星液滴的形成并减小了液滴的尺寸。我们报告了无量纲液滴尺寸与新的无量纲分组之间的相关性,该无量纲分组将流速比与界面张力和界面弹性之比结合在一起。

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