论文标题

散布液滴的初始固化动力学

Initial solidification dynamics of spreading droplets

论文作者

Koldeweij, Robin B. J., Kant, Pallav, Harth, Kirsten, de Ruiter, Rielle, Gelderblom, Hanneke, Snoeijer, Jacco H., Lohse, Detlef, van Limbeek, Michiel A. J.

论文摘要

当将液滴与过冷表面接触时,它会弄湿底物并同时凝固。相变效应与接触线运动之间的相互作用(导致其被捕的)仍然鲜为人知。在这里,我们揭示了扩散六铁烷液滴的早期凝固模式和动力学。总内反射(TIR)成像用于时间和空间上,以解决早期的固化行为。这样,我们确定导致接触线逮捕的条件。我们量化了整体成核行为,\ textIt {i.e。}成核速率和晶体生长速度,并显示其对底物施加的底冷的敏感性。通过结合Johnson-Mehl-Avrami-Kolmogorov成核理论和扩散的比例关系,我们可以计算固体面积分数的时间演化,这与我们的观察结果非常吻合。我们还表明,对于足够强大的过冷,是晶体的快速生长决定了扩散接触线的最终逮捕。

When a droplet is brought in contact with an undercooled surface, it wets the substrate and solidifies at the same time. The interplay between the phase transition effects and the contact-line motion, leading to its arrest, remains poorly understood. Here we reveal the early solidification patterns and dynamics of spreading hexadecane droplets. Total internal reflection (TIR) imaging is employed to temporally and spatially resolve the early solidification behaviour. With this, we determine the conditions leading to the contact-line arrest. We quantify the overall nucleation behaviour, \textit{i.e.} the nucleation rate and the crystal growth speed, and show its sensitivity to the applied undercooling of the substrate. By combining the Johnson-Mehl-Avrami-Kolmogorov nucleation theory and scaling relations for the spreading, we can calculate the temporal evolution of the solid area fraction, which is in good agreement with our observations. We also show that for strong enough undercooling it is the rapid growth of the crystals which determines the eventual arrest of the spreading contact line.

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