论文标题
使用液态针滴沉积技术滴剂扩散动力学
Drop spreading dynamics with a liquid needle drop deposition technique
论文作者
论文摘要
本文代表了一项理论和实验研究,对液滴的扩散动力学,该动力学由液滴沉积系统产生,称为液态针液滴沉积技术。该技术利用了由加压剂量系统产生的连续液体射流,该剂量系统会在基板上产生液滴,以通过光接触角度测量来表征。尽管许多研究探索了液滴扩散情景的理论建模,但尚未解决由射流撞击和连续添加液体质量产生的液滴扩散动力学的理论模型。在这项研究中,我们基于总体能量平衡方法开发了一个理论模型,使我们能够研究各种粘度的周围介质下液滴扩散的物理。非线性普通微分方程的数值解决方案使我们有机会评论液滴扩散的变化,这是Weber数字($ we $),雷诺数($ re re $)和债券编号($ re $)($ $ $)($ $ $)的函数,范围为0.5-3、75-150和0.001-150和0.001-0.3。我们还提出了一个液体喷射冲击模型,以预测初始液滴直径为提出的管理方程的初始条件。通过实验测量结果进一步验证了该模型,并且已经观察到合理的一致性。实验观察和理论研究还突出了液态针滴沉积技术的适用性的精度,可重复性和广泛的范围。
This paper represents a theoretical and an experimental study of the spreading dynamics of a liquid droplet, generated by a needle free deposition system called the liquid needle droplet deposition technique. This technique utilizes a continuous liquid jet generated from a pressurized dosing system which generates a liquid drop on a substrate to be characterized by optical contact angle measurements. Although many studies have explored the theoretical modelling of the droplet spreading scenario, a theoretical model representing the spreading dynamics of a droplet, generated by the jet impact and continuous addition of liquid mass, is yet to be addressed. In this study, we developed a theoretical model based on the overall energy balance approach which enables us to study on the physics of variation of droplet spreading under surrounding medium of various viscosities. The numerical solution of the non-linear ordinary differential equation has provided us the opportunity to comment on the variation of droplet spreading, as a function of Weber number ($We$), Reynolds number ($Re$) and Bond number ($Bo$) ranging from 0.5-3, 75-150, and 0.001-0.3, respectively. We have also presented a liquid jet impact model in order to predict the initial droplet diameter as an initial condition for the proposed governing equation. The model has been verified further with the experimental measurements and reasonable agreement has been observed. Experimental observations and theoretical investigations also highlight the precision, repeatability and wide range of the applicability of liquid needle drop deposition technique.