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自再湿液滴的非等温铺展动力学

Nonisothermal Spreading Dynamics of Self-Rewetting Droplets.

作者信息

Mamalis Dimitrios, Koutsos Vasileios, Sefiane Khellil

机构信息

School of Engineering, Institute for Materials and Processes, The University of Edinburgh , King's Buildings, Edinburgh EH9 3FB, U.K.

出版信息

Langmuir. 2018 Feb 6;34(5):1916-1931. doi: 10.1021/acs.langmuir.7b04045. Epub 2018 Jan 26.

Abstract

We experimentally studied the spreading dynamics of binary alcohol mixtures (and pure liquids for reference) deposited on a heated substrate in a partially wetting situation under nonisothermal conditions. We show that the spreading mechanism of an evaporating droplet exhibits a power-law growth with early-stage exponents that depend strongly and nonmonotonically on the substrate temperature. Moreover, we investigated the temporal and spatial thermal dynamics in the droplet using infrared thermography, revealing the existence of unique thermal patterns due to thermal and/or solutal instabilities, which lead to surface tension gradients, namely the Marangoni effect. Our key findings are that the temperature of the substrate drastically affects the early-stage inertial-capillary spreading regime owing to the nonmonotonic surface tension-temperature dependence of the self-rewetting liquids. At later stages of wetting, the spreading dynamics enters the viscous-capillary dominated regime, with the characteristic low kinetics mirroring the behavior of pure liquids.

摘要

我们通过实验研究了在非等温条件下部分润湿情况下沉积在加热基板上的二元醇混合物(以及作为参考的纯液体)的铺展动力学。我们表明,蒸发液滴的铺展机制呈现幂律增长,其早期指数强烈且非单调地依赖于基板温度。此外,我们使用红外热成像技术研究了液滴中的时间和空间热动力学,揭示了由于热和/或溶质不稳定性导致的独特热模式的存在,这会导致表面张力梯度,即马兰戈尼效应。我们的主要发现是,由于自再润湿液体的表面张力 - 温度依赖性非单调,基板温度会极大地影响早期惯性 - 毛细管铺展阶段。在润湿的后期阶段,铺展动力学进入粘性 - 毛细管主导阶段,其特征性的低动力学反映了纯液体的行为。

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