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液滴在水平固体表面上的热毛细运动。

Thermocapillary motion of a liquid drop on a horizontal solid surface.

作者信息

Pratap Vikram, Moumen Nadjoua, Subramanian R Shankar

机构信息

Department of Chemical Engineering and Center for Advanced Materials Processing, Clarkson University, Potsdam, New York 13699-5705, USA.

出版信息

Langmuir. 2008 May 6;24(9):5185-93. doi: 10.1021/la7036839. Epub 2008 Apr 10.

DOI:10.1021/la7036839
PMID:18399689
Abstract

The motion of drops of decane on horizontal poly(dimethylsiloxane) (PDMS)-coated glass surfaces resulting from a temperature gradient on the surface is studied experimentally, and a theoretical description of the thermocapillary motion of spherical-cap drops on a horizontal solid surface obtained using the lubrication approximation also is presented. The drop size and the applied temperature gradient are varied in the experiments, and the measured velocities of the drops are compared with predictions from the model. The scalings of the velocity with drop size and with the applied temperature gradient are predicted correctly by the theoretical model, even though the actual velocities are smaller than those predicted. The influence of contact angle hysteresis, which leads to a critical drop size below which drops do not move, is found to be minimal. Unlike in previous studies (Chen, J. Z.; Troian, S. M.; Darhuber, A. A.; Wagner, S. J. Appl. Phys. 2005, 97, 014906; Brzoska, J. B.; Brochard-Wyart, F.; Rondelez, F. Langmuir 1993, 9, 2220), this small critical drop size appears to be independent of the applied temperature gradient. Results also are presented on the deformation of the contact lines of the moving drops in the form of an aspect ratio, and correlated with the temperature difference across the footprints of the drops and the capillary number.

摘要

实验研究了由于表面温度梯度导致癸烷液滴在水平聚二甲基硅氧烷(PDMS)涂层玻璃表面上的运动,并给出了使用润滑近似法得到的球形帽状液滴在水平固体表面上热毛细运动的理论描述。实验中改变了液滴尺寸和施加的温度梯度,并将测量的液滴速度与模型预测值进行比较。尽管实际速度小于预测值,但理论模型正确预测了速度与液滴尺寸和施加温度梯度之间的标度关系。发现接触角滞后的影响最小,接触角滞后会导致存在一个临界液滴尺寸,低于该尺寸液滴不会移动。与之前的研究(Chen, J. Z.; Troian, S. M.; Darhuber, A. A.; Wagner, S. J. Appl. Phys. 2005, 97, 014906; Brzoska, J. B.; Brochard-Wyart, F.; Rondelez, F. Langmuir 1993, 9, 2220)不同,这个小的临界液滴尺寸似乎与施加的温度梯度无关。还给出了以纵横比形式表示的移动液滴接触线变形的结果,并将其与液滴足迹上的温差和毛细管数相关联。

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