Jain S K, Sen A K
Micro Nano Bio Fluidics Unit, Department of Mechanical Engineering, Indian Institute of Technology Madras, Chennai - 600036, Tamil Nadu, India.
Soft Matter. 2024 Aug 14;20(32):6431-6439. doi: 10.1039/d4sm00550c.
We report the transition between stream and droplet regimes in a coflow of an aqueous stream and oil-based ferrofluid. The transition between stream and droplet regimes is typically attained by controlling the capillary numbers (Ca) of the phases. Remarkably, we experimentally evidence a transition between the regimes by adjusting the exposure of the system to a magnetic field, with Ca fixed. We represent the various regimes: stable coflow, interface deformation, and droplet generation, in terms of the magnetic bond number (Bo) and the ratio of capillary numbers of the phases (Ca). The different regimes are a consequence of the interplay of the magnetic, viscous, and interfacial tension forces, represented by the two dimensionless numbers. We explain the regimes in terms of the magnetic pinch-off () and advection () time scales: for ≫ a stable coflow is observed, for ∼ interface deformation is observed, and for ≪ droplet breakup is observed. We study the interface deformation and droplet size from experiments and predict the same from theoretical scaling. We find the interface deformation increases and the droplet size decreases with increases in Bo and Ca. The present study may find applications in magnetic field-assisted on-demand droplet generation in microfluidics.
我们报告了水流与油基铁磁流体并流时,流态与液滴态之间的转变。流态与液滴态之间的转变通常通过控制各相的毛细管数(Ca)来实现。值得注意的是,我们通过在Ca固定的情况下,调整系统对磁场的暴露程度,从实验上证明了两种流态之间的转变。我们根据磁键数(Bo)和各相毛细管数之比(Ca)来描述各种流态:稳定并流、界面变形和液滴生成。不同的流态是由磁、粘性和界面张力相互作用的结果,由这两个无量纲数表示。我们根据磁夹断()和平流()时间尺度来解释这些流态:当≫时,观察到稳定并流;当 ∼ 时,观察到界面变形;当≪时,观察到液滴破碎。我们通过实验研究了界面变形和液滴尺寸,并根据理论标度进行了预测。我们发现,随着Bo和Ca的增加,界面变形增大,液滴尺寸减小。本研究可能在微流控中磁场辅助按需液滴生成方面找到应用。