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Spontaneous droplets gyrating via asymmetric self-splitting on heterogeneous surfaces

机译:自发液滴通过异质表面上的不对称自分裂旋转

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Droplet impacting and bouncing off solid surface plays a vital role in various biological/physiological processes and engineering applications. However, due to a lack of accurate control of force transmission, the maneuver of the droplet movement and energy conversion is rather primitive. Here we show that the translational motion of an impacting droplet can be converted to gyration, with a maximum rotational speed exceeding 7300 revolutions per minute, through heterogeneous surface wettability regulation. The gyration behavior is enabled by the synergetic effect of the asymmetric pinning forces originated from surface heterogeneity and the excess surface energy of the spreading droplet after impact. The findings open a promising avenue for delicate control of liquid motion as well as actuating of solids.
机译:液滴撞击和弹跳出固体表面在各种生物/生理过程和工程应用中起着至关重要的作用。然而,由于缺乏对力传递的精确控制,因此液滴运动和能量转换的操纵相当原始。在这里,我们表明,通过非均匀的表面润湿性调节,冲击液滴的平移运动可以转换为回转,最大转速超过每分钟7300转。旋转行为是由不均匀钉扎力的协同作用实现的,该钉扎力源自表面异质性和撞击后散布液滴的多余表面能。这些发现为液体运动的精细控制和固体的活化开辟了一条有希望的途径。

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