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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Contact angle and impinging process of droplets on partially grooved hydrophobic surfaces
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Contact angle and impinging process of droplets on partially grooved hydrophobic surfaces

机译:部分沟槽疏水表面上液滴的接触角和撞击过程

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Wetting states of droplets on partially micro-grooved surfaces were investigated. Grooves were fabricated using soft lithography and the width of the grooves was smaller than the droplet diameter. On the partially micro-grooved surfaces, the apparent contact angle parallel to the grooves is larger than the one on the smooth surface, while the microstructures have little effect on the contact angle perpendicular to the grooves. Increasing the fraction of the grooved area and the surface energy of the surface will result. in a more anisotropic droplet. When a droplet impinged upon these partially grooved surfaces, the spreading process was similar to that on a smooth surface. However, the recoiling process was found to be quite anisotropic. The grooves enhanced the recoiling velocity in the direction parallel to the grooves while hindering the recoiling process in the perpendicular direction. The recoiling process will become more anisotropic by increasing the fraction of the grooved area. The effect of the grooves on both the contact angle and the impinging process is independent of the groove width scale and is only dependent on the fraction of the grooved area in the Cassie state. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了部分微槽表面上液滴的润湿状态。使用软光刻制造沟槽,并且沟槽的宽度小于液滴直径。在部分微槽表面上,与凹槽平行的表观接触角大于在光滑表面上的表观接触角,而微观结构对垂直于凹槽的接触角影响很小。会增加开槽区域的分数和表面的表面能。在更各向异性的液滴中。当液滴撞击在这些部分开槽的表面时,铺展过程类似于在光滑表面上的铺展过程。但是,发现反绕过程是非常各向异性的。凹槽在平行于凹槽的方向上提高了回卷速度,同时阻碍了在垂直方向上的回卷过程。通过增加开槽区域的比例,反绕过程将变得更加各向异性。凹槽对接触角和撞击过程的影响均与凹槽宽度的大小无关,并且仅取决于在卡西状态下凹槽区域的分数。 (C)2015 Elsevier Ltd.保留所有权利。

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