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Evaporation of a sessile droplet resting on a thin vanadium dioxide film

机译:蒸发在薄钒二氧化薄膜上搁置的柄液滴

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The paper is devoted to the study of the evaporation of water sessile drops resting on a smooth surface consisting of a vanadium dioxide thin film (-150 nm) covering a sapphire substrate. Vanadium dioxide is considered because of the promising applications it is expected to have in new technologies for heat waste recuperation. Water drops are deposited on the substrate heated at different temperatures from 20 to 80°C, and the time dependence of the droplet shape is registered with the use of shadow imaging. This reveals that the three-phase contact line remains pinned during most of the drop lifetime, while the wetting contact angle as well as the drop volume are continuously changing. With the help of image processing, the vaporization rate of the drop is calculated. It is found that it is almost constant with time, and increases exponentially with the temperature of the substrate, well in agreement with theoretical models developed to describe the evaporation of drops with a pinned contact line.
机译:本文致力于研究搁置在由覆盖蓝宝石衬底的二氧化钒薄膜(-150nm)组成的光滑表面上的水无尾滴的蒸发。由于有前途的应用,预计对热废物恢复的新技术有望进行二氧化钒。将水滴沉积在20至80℃的不同温度下加热的基板上,并且液滴形状的时间依赖性在使用阴影成像时登记。这揭示了在大多数下降寿命期间保持三相接触线保持固定,而润湿接触角以及液滴的液体是连续变化的。在图像处理的帮助下,计算下降的蒸发速率。结果发现,随着时间的时间几乎是恒定的,并且随着基板的温度呈指数增加,良好地与制定的理论模型相一致,以描述用固定的接触线蒸发滴的滴度。

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