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预湿固体表面上液滴的毛细管扩展

Capillary Spreading of Liquid Drops on Prewetted Solid Surfaces.

作者信息

Chebbi R

机构信息

Department of Chemical Engineering, University of Qatar, Doha, State of Qatar

出版信息

J Colloid Interface Sci. 1999 Mar 15;211(2):230-237. doi: 10.1006/jcis.1998.5965.

DOI:10.1006/jcis.1998.5965
PMID:10049539
Abstract

A description of the entire configuration of liquid drops spreading over a previously wetted solid surface is given in the case of negligible evaporation and small Bond and Weber numbers. Two solutions are developed: an outer one which is valid in the bulk of the drop and an inner solution which applies in the vicinity of the macroscopic boundary of the drop. The model accounts for deviations from the constant-curvature profile for the outer solution and, in addition, for deviations of the inner solution from the asymptotic approximation of V. V. Kalinin and V. M. Starov (1986, Colloid J. USSR (English tr.) 48, 907). Both solutions are shown to present an inflexion point. Its location is shown to be very sensitive to one parameter which fully determines the inner solution. The value of this parameter, and the spreading laws for the drop radius, the apex height, and the dynamic contact angle are determined by matching the inner and outer solutions. Results show deviations from the power laws used in the literature. These deviations are discussed in relation to the results obtained by V. M. Starov et al. (1994, Adv. Colloid Interface Sci. 50, 187), and R. Chebbi and M. S. Selim (1997, J. Colloid Interface Sci. 195, 66), compared with the experimental data presented by V. M. Starov et al. for spreading over dry smooth solid surfaces. Moreover, the present analysis allows description of the entire drop configuration and slope and curvature variations. Copyright 1999 Academic Press.

摘要

在蒸发可忽略不计且邦德数和韦伯数较小的情况下,给出了液滴在先前已湿润的固体表面上扩散的整个构型的描述。得到了两种解:一种外部解,它在液滴主体中有效;一种内部解,它适用于液滴宏观边界附近。该模型考虑了外部解与常曲率轮廓的偏差,此外,还考虑了内部解与V. V. 卡里宁和V. M. 斯塔罗夫(1986年,《苏联胶体杂志》(英文译本)48,907)渐近近似的偏差。两种解都显示出一个拐点。其位置对一个完全决定内部解的参数非常敏感。通过匹配内部解和外部解来确定该参数的值以及液滴半径、顶点高度和动态接触角的扩展规律。结果显示与文献中使用的幂律存在偏差。结合V. M. 斯塔罗夫等人(1994年,《胶体与界面科学进展》50,187)以及R. 谢比和M. S. 塞利姆(1997年,《胶体与界面科学杂志》195,66)得到的结果,将这些偏差与V. M. 斯塔罗夫等人给出的在干燥光滑固体表面上扩散的实验数据进行了比较。此外,本分析允许描述整个液滴构型以及斜率和曲率变化。版权所有1999年学术出版社。

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