Farhan N M, Tafreshi H Vahedi
Department of Mechanical and Nuclear Engineering , Virginia Commonwealth University , Richmond , Virginia 23284-3015 , United States.
Langmuir. 2019 Jun 25;35(25):8490-8499. doi: 10.1021/acs.langmuir.9b01313. Epub 2019 Jun 13.
The ability to predict and/or measure the force needed to detach a droplet from a fiber (or an assembly of fibers) is important in designing efficient droplet?air or droplet?fluid separation media for a variety of applications. This paper reports on the use of magnetic force to measure the force of detachment for nonmagnetic droplets for the first time. This is accomplished by adding a small amount of ferrofluid (the secondary fluid) to the original nonmagnetic droplet (the primary fluid) to create a compound droplet with the ferrofluid nesting inside or cloaking the nonmagnetic droplet. Either way, the secondary ferrofluid can be used to induce a body force to the resulting compound droplet and thereby detach it from the fiber(s). The recorded detachment force can be used directly (the case of nesting ferrofluid) or after scaling (the case of cloaking ferrofluid) to obtain the force of detachment for the original nonmagnetic droplet. The novelty of the proposed method lies in the fact that it circumvents the need for using an external object, an airflow, or a centrifugal device for force measurement. The accuracy of our measurements was examined through comparison with validated numerical simulations as well as experimental data in the literature and good agreement was observed.
预测和/或测量使液滴从纤维(或纤维组件)上脱离所需力的能力,对于设计适用于各种应用的高效液滴-空气或液滴-流体分离介质至关重要。本文首次报道了利用磁力测量非磁性液滴的脱离力。这是通过向原始非磁性液滴(主流体)中添加少量铁磁流体(次流体)来实现的,从而形成一种复合液滴,其中铁磁流体嵌套在非磁性液滴内部或包裹着非磁性液滴。无论哪种方式,次铁磁流体都可用于对所得复合液滴施加体力,进而使其从纤维上脱离。记录的脱离力可直接使用(铁磁流体嵌套的情况)或经过缩放后使用(铁磁流体包裹的情况),以获得原始非磁性液滴的脱离力。所提出方法的新颖之处在于,它无需使用外部物体、气流或离心装置来进行力的测量。通过与经过验证的数值模拟以及文献中的实验数据进行比较,检验了我们测量的准确性,结果发现二者吻合良好。