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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Trapping of Water Drops by Line-Shaped Defects on Superhydrophobic Surfaces
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Trapping of Water Drops by Line-Shaped Defects on Superhydrophobic Surfaces

机译:在超疏水表面上通过线状缺陷捕获水滴

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We have investigated the effect of line-shaped topographical defects on the motion of water drops across superhydrophobic wax surfaces using a high-speed video camera. The defects are introduced onto the superhydrophobic wax surfaces by a scratching procedure. It is demonstrated that the motion of a drop interacting with the defect can be approximated by a damped harmonic oscillator. Whether a drop passes or gets trapped by the defect is determined by the incident speed and the properties of the oscillator, specifically by the damping ratio and a nondimensional forcing constant representing the effects of gravity and pinning forces. We also show that it is possible to predict a critical trapping speed as well as an exit speed in systems with negligible viscous dissipation using a simple work energy consideration.
机译:我们已经使用高速摄像机研究了线形地形缺陷对水滴在超疏水蜡表面上运动的影响。通过刮擦程序将缺陷引入超疏水蜡表面。已经证明,与缺陷相互作用的液滴运动可以通过阻尼谐波振荡器来近似。液滴是通过缺陷还是通过缺陷捕获,取决于入射速度和振荡器的特性,具体取决于阻尼比和代表重力和钉扎力影响的无量纲强迫常数。我们还表明,使用简单的工作能量考虑因素,可以在粘性耗散可忽略不计的系统中预测临界捕集速度和出口速度。

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