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Dynamics of water drop detachment from a superhydrophobic surface induced by an ultrasonic field

机译:超声场引起的超疏水表面水滴脱离的动力学

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摘要

We present the dynamics of sessile water drops during their detachment from a superhydrophobic surface induced by ultrasound. The superhydrophobic surface not only serves as a reflector of the ultrasound emitted from the source but also reduces the adhesive force between the drop and the solid surface. The drop is subject to an acoustic radiation force in the ultrasonic field due to the non-linear effect of the latter. By shifting the reflector upward to approach the first resonance distance, the sessile drop is first elongated in the vertical direction, with its contact line and contact angle decreasing, and finally detaches from the superhydrophobic surface when the acoustic radiation force overcomes the sum of the gravitational and adhesive forces. The acoustic radiation pressure and acoustic radiation force are calculated by solving the acoustic field with the finite element method. The results indicate that the distribution of acoustic radiation pressure provides the upward force to make the drop detach. After its detachment from the reflector, the drop undergoes vertical vibration accompanied by shape oscillations. Oscillations of a water drop that is pinned on the reflector are also demonstrated. Published by AIP Publishing.
机译:我们介绍了无水水滴从超声诱导的超疏水表面脱离过程中的动力学。超疏水表面不仅充当从源发出的超声波的反射器,而且还降低了液滴与固体表面之间的粘合力。由于超声波场的非线性作用,液滴在超声波场中受到声辐射力。通过使反射器向上移动以接近第一共振距离,无柄液滴首先在垂直方向上伸长,其接触线和接触角减小,最后当声辐射力克服重力之和时从超疏水表面脱离。和粘附力。通过用有限元法求解声场来计算声辐射压力和声辐射力。结果表明,声辐射压力的分布提供了使液滴分离的向上力。从反射器上取下后,墨滴会受到垂直振动并伴有形状振动。还演示了固定在反射器上的水滴的振荡。由AIP Publishing发布。

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