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磁场对铁磁流体液滴蒸发行为的调控。

Magnetic regulation on evaporation behavior of ferrofluid sessile droplets.

机构信息

College of Astronautics, Nanjing University of Aeronautics and Astronautics, Nanjing, P. R. China.

出版信息

Electrophoresis. 2023 Dec;44(23):1879-1888. doi: 10.1002/elps.202300064. Epub 2023 Jul 6.

DOI:10.1002/elps.202300064
PMID:37409390
Abstract

Active magnetic regulation is an emerging subject due to the special and programmable wettability of the sessile ferrofluid droplet. The interaction between liquid and externally applied magnetic field gives rise to controllable spreading and thus evaporation. This work reports the experimental and numerical results of the natural evaporation of a ferrofluid droplet under the effect of a nonuniform magnetic field. The evaporation process of droplets is described into two stages in terms of the geometric distortion and the appearance of the deposition pattern. The presence of the magnetic field leads to a transition of droplet drying from the disk shape with a ring to multiple peaks. A numerical model is established to simulate the evaporation process of ferrofluid droplets with the arbitrary Lagrangian-Eulerian method for tracking droplet deformation. The increasing magnetic flux could effectively enlarge the contact radius and enhance the internal flow of the ferrofluid droplet, thus promoting the evaporation process. The numerical results are verified by comparing the droplet geometry deformation with the experimental results. In both the numerical and experimental investigations, the externally applied magnetic field shortens the process of ferrofluid droplet evaporation. The design and optimization of the magnetic field play an important role in regulating ferrofluid droplet evaporation, which in turn facilitates technological advances in industries such as evaporative cooling and inkjet printing.

摘要

主动磁调节是一个新兴的学科,因为固定铁磁液滴具有特殊和可编程的润湿性。液体与外加磁场的相互作用导致可控的扩展和蒸发。本工作报道了非均匀磁场下铁磁液滴自然蒸发的实验和数值结果。根据几何变形和沉积图案的出现,将液滴的蒸发过程描述为两个阶段。磁场的存在导致液滴干燥从具有环的盘状转变为多个峰。建立了一个数值模型,使用任意拉格朗日-欧拉法模拟铁磁液滴的蒸发过程,以跟踪液滴变形。增加磁通量可以有效地增大接触半径并增强铁磁液滴的内部流动,从而促进蒸发过程。通过将液滴几何变形与实验结果进行比较,验证了数值结果。在数值和实验研究中,外加磁场缩短了铁磁液滴蒸发的过程。磁场的设计和优化在调节铁磁液滴蒸发方面起着重要的作用,这反过来又促进了蒸发冷却和喷墨打印等工业的技术进步。

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