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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Lateral motion of a droplet after impacting on groove-patterned superhydrophobic surfaces
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Lateral motion of a droplet after impacting on groove-patterned superhydrophobic surfaces

机译:撞击槽图案化超疏水表面后液滴的横向运动

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摘要

The lateral motion of a droplet after its impact on groove-patterned superhydrophobic surfaces is numerically studied in the present work. Different from previous studies, the wettability gradient is not required to produce lateral motions. Instead, a substrate with two halves decorated with same Cassie area fractions but different length ratios is used and four different motions can be observed by varying the impact velocity. The asymmetrical penetration into the grooves of the substrate is found to be the main reason for triggering the different motions. The penetrated liquid could bring upward momentum to lift the droplet from one side of the substrate, or it could block the retracting contact line from one side. As a result, different oblique motion components are generated and added to the vertical rebound motion, finally leading to the different lateral motions. Our simulation findings provide a fresh idea for the control of droplet motion by coating the solid surfaces.
机译:在当前工作中,在数值上研究其对凹槽图案化的超疏水表面的影响之后的液滴的横向运动。 与以前的研究不同,润湿性梯度不需要产生横向运动。 相反,使用具有相同Cassie面积分数但不同长度比的两半的基板,通过改变冲击速度,可以观察到四种不同的运动。 发现衬底的凹槽中的不对称渗透是触发不同运动的主要原因。 穿透液体可以使向上动力从基板的一侧抬起液滴,或者它可以阻挡一侧的缩回接触线。 结果,产生不同的倾斜运动部件并将其添加到垂直反弹运动中,最终导致不同的横向运动。 我们的仿真结果通过涂覆固体表面来提供控制液滴运动的新思想。

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