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DRIVING WETTING TRANSITIONS ON TEXTURED SURFACES USING ULTRASONIC VIBRATION

机译:使用超声波振动驱动纹理表面上的润湿过渡

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Adhesives, medical devices, and many cleaning products depend on the wetting of liquids on solid surfaces. The liquid/solid interaction depends on chemistry, surface topology, and external energy input. For instance, surfactants are commonly used in cleaning solutions to improve their effectiveness, and electrical fields are frequently used to control the contact angle of liquid droplets. Low frequency vibration has been used to spread, move, and manipulate droplets using the mode shape oscillations of the droplet to displace the contact line. Ultrasonic vibration (above 20 kHz) can also cause a liquid droplet to wet or spread out on a solid surface under the right circumstances. We have previously demonstrated that ultrasonic vibration can be used to control the wetting/spreading of liquid droplets on smooth hydrophobic surfaces and that the response is relatively insensitive to excitation frequency or fluid properties [1]. This paper reports on the use of ultrasonic vibration to initiate spreading on surfaces with etched pillars. Ultrasonic vibration successfully initiated a transition from Cassie to Wenzel states in all geometries with no apparent need to tune excitation frequencies to the geometry. However, the magnitude of the acceleration required to initiate the transition decreased with increased pillar spacing. For small pillar spacing, some smooth spreading in the Cassie wetting mode was observed before transition.
机译:粘合剂,医疗装置和许多清洁产品取决于固体表面上的液体的润湿。液体/固体相互作用取决于化学,表面拓扑和外部能量输入。例如,表面活性剂通常用于清洁溶液以改善其有效性,并且通常用于控制液滴的接触角。使用液滴的模式形状振荡来使用低频振动来扩散,移动和操纵液滴以取代接触线。超声波振动(20 kHz以上)还可以在合适的环境下导致液滴湿润或在固体表面上展开。我们之前已经证明,超声波振动可用于控制液滴在光滑的疏水表面上的液滴润湿/展开,并且对响应对激发频率或流体性质相对不敏感[1]。本文报告了超声波振动在蚀刻柱的表面上发动散布。超声波振动在所有几何形状中成功地启动了从卡西到Wenzel状态的过渡,没有明显需要将激励频率调节到几何形状。然而,启动过渡所需的加速度的大小随着柱间距增加而降低。对于小柱间距,在过渡之前观察到在Cassie润湿模式中进行一些光滑的展开。

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