论文标题

sessile evaporating液滴的扩散和缩回动力学,包括挥发性二进制混合物

Spreading and retraction dynamics of sessileevaporating droplets comprising volatile binary mixtures

论文作者

Karapetsas, A. G. L. Williams. G., Mamalis, D., Sefiane, K., Matar, O. K., Valluri, P.

论文摘要

研究了沉积在加热基板上的二元混合物的薄挥发性液滴的动力学。利用润滑理论,我们开发了一种新型的单方面模型,以预测由挥发性二进制二进制混合物在基板上形成的,具有高润湿性。考虑到液体性质的变化以及惯性的影响,考虑了带有移动接触线的细滴。探索了参数空间,并评估了对润湿和蒸发的影响。在所有情况下,增加浮力量的Marangoni应力都会提高扩散率,以接近超级液体的液体。为了验证我们的模型,实验是用二元乙醇 - 水滴散布在从下方加热的亲水玻片上进行的。量化速率是量化的,表明在接触线驱动线上驱动器更加挥发性成分(乙醇)的优先蒸发超级散布,在某些情况下导致了接触线的不稳定性。在我们的模型和实验之间发现了良好的定性协议,并在扩散率方面达成了定量协议。

The dynamics of thin volatile droplets comprising of binary mixtures deposited on a heated substrate are investigated. Using lubrication theory, we develop a novel one-sided model to predict the spreading and retraction of an evaporating sessile axisymmetric droplet formed of a volatile binary mixture on a substrate with high wettability. A thin droplet with a moving contact line is considered, taking into account the variation of liquid properties with concentration as well as the effects of inertia. The parameter space is explored and the resultant effects on wetting and evaporation are evaluated. Increasing solutal Marangoni stress enhances spreading rates in all cases, approaching those of superspreading liquids. To validate our model, experiments are conducted with binary ethanol-water droplets spreading on hydrophilic glass slides heated from below. The spreading rate is quantified, revealing that preferential evaporation of the more volatile component (ethanol) at the contact line drives superspreading, leading in some cases to a contact line instability. Good qualitative agreement is found between our model and experiments, with quantitative agreement being achieved in terms of spreading rate.

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