Mondal Pranab Kumar, Ghosh Uddipta, Bandopadhyay Aditya, DasGupta Debabrata, Chakraborty Suman
Department of Mechanical Engineering, Indian Institute of Technology Kharagpur, West Bengal 721302, India.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Aug;88(2):023022. doi: 10.1103/PhysRevE.88.023022. Epub 2013 Aug 23.
We investigate the contact-line dynamics of two immiscible fluids in a narrow fluidic confinement comprising wettability-gradient surfaces, where the bulk fluid motion is actuated by an externally applied electric field. We assume that the channel walls bear spatially uniform surface potential. Our analysis, based on the diffuse interface formalism, reveals that the contact line undergoes stick-slip motion over the chemical patches and its velocity is a strong function of the interfacial electrokinetics. We also show that the tendency of the contact line of getting pinned to the selected patches can decrease or increase with its progression along the channel, depending on the ratio of the permittivities of the two fluids. Finally, we establish the functional dependency of the time taken by the contact line to move across the patches (capillary filling time) on the combined consequences of interfacial electrochemistry and wettability patterning.
我们研究了在由润湿性梯度表面构成的狭窄流体限制区域内两种不混溶流体的接触线动力学,其中主体流体运动由外部施加的电场驱动。我们假设通道壁具有空间均匀的表面电势。基于扩散界面形式理论的分析表明,接触线在化学斑块上经历粘滑运动,其速度是界面电动现象的强函数。我们还表明,接触线固定在选定斑块上的趋势会随着其沿通道的推进而减小或增加,这取决于两种流体的介电常数之比。最后,我们确定了接触线穿过斑块所需时间(毛细管填充时间)与界面电化学和润湿性图案化综合结果之间的函数关系。