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液滴和接触线的振动光谱。

Vibration spectroscopy of a sessile drop and its contact line.

机构信息

Department of Chemical Engineering, Lehigh University, Bethlehem, Pennsylvania 18015, United States.

出版信息

Langmuir. 2012 Oct 2;28(39):14100-6. doi: 10.1021/la302958m. Epub 2012 Sep 20.

Abstract

Resonance frequencies of small sessile liquid drops (1-20 μL) were estimated from the power spectra of their height fluctuations after subjecting them to white noise vibration. Various resonance modes could be identified with this method as a function of the mass of the drop. Studies with water drops on such supports as polystyrene (θ ≈ 80°) and a superhydrophobic surface of microfibrillar silicone rubber (θ ≈ 162°) demonstrated that the resonant frequency decreases with the contact angle, θ. This trend is in remarkable agreement with the current models of the resonant vibration of sessile drops. A novel aspect of this study is the analysis of the modes of a slipping contact line that indicated that its higher frequency modes are more severely damped than its lower ones. Another case is with the glycerol-water solutions, where the resonance frequency decreases with the concentration of glycerol purely due to the capillary effects. The interface fluctuation, on the other hand, is strongly correlated with the kinematic viscosity of the liquid. Thus, these experiments provide a means to measure the surface tension and the viscosity of very small droplets.

摘要

通过对受白噪声振动的小固着液滴(1-20 μL)的高度波动进行功率谱分析,估算其共振频率。通过这种方法,可以根据液滴的质量确定各种共振模式。在聚苯乙烯(θ≈80°)和超疏水微纤维硅橡胶表面(θ≈162°)等支撑物上进行水滴研究表明,共振频率随接触角θ而降低。这一趋势与当前固着液滴共振振动模型非常吻合。本研究的一个新方面是对滑动接触线模式的分析,表明其较高频率模式的阻尼比较低频率模式严重。另一个例子是甘油-水混合物,其中由于毛细作用,甘油浓度的增加导致共振频率降低。另一方面,界面波动与液体的运动粘度强烈相关。因此,这些实验提供了一种测量非常小液滴表面张力和粘度的方法。

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