表面张力
润湿
共晶体系
接触角
产量(工程)
氧化物
坐滴法
表面应力
粘度
流变仪
液态金属
镓
材料科学
下降(电信)
屈服面
复合材料
压力(语言学)
热力学
表面能
化学工程
金属
过渡金属
合金
缩放比例
润湿转变
布鲁斯特角
作者
Qin Xu,Nikolai Oudalov,Qiti Guo,Heinrich M. Jaeger,Eric Brown
出处
期刊:Physics of Fluids
[American Institute of Physics]
日期:2012-06-01
卷期号:24 (6)
被引量:241
摘要
Liquid metals exhibit remarkable mechanical properties, in particular large surface tension and low viscosity. However, these properties are greatly affected by oxidation when exposed to air. We measure the viscosity, surface tension, and contact angle of gallium and a eutectic gallium-indium alloy while controlling such oxidation by surrounding the metals with an acid bath of variable concentration. Rheometry measurements reveal a yield stress directly attributable to an oxide skin that obscures the intrinsic behavior of the liquid metals. We demonstrate how the intrinsic viscosity can be obtained with precision through a scaling technique that collapses low- and high-Reynolds number data. Measuring surface tension with a pendant drop method, we show that the oxide skin generates a surface stress that mimics surface tension and develop a simple model to relate this to the yield stress obtained from rheometry. We find that yield stress, surface tension, and contact angle all transition from solid-like to liquid behavior at the same critical acid concentration, thereby quantitatively confirming that the wettability of these liquid metals is due to the oxide skin.
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