论文标题

液滴对具有不对称微观特征的表面的影响

Droplet impact on surfaces with asymmetric microscopic features

论文作者

Yada, Susumu, Allais, Blandine, van der Wijngaart, Wouter, Lundell, Fredrik, Amberg, Gustav, Bagheri, Shervin

论文摘要

在自然和工业应用中,液体滴对刚性表面的影响是清洁,冷却和涂料过程的核心。但是,尚不清楚固体表面上的毛孔,粗糙度和质地的细节如何影响冲击动力学的初始阶段。在这里,我们通过实验研究在低速下撞击的降落到具有不对称(倾斜)脊的质感的表面。我们定义线路毛细管编号$ CA_F = {μ_FV_0}/σ$(其中$μ_f$,$ v_0 $和$σ$分别是线摩擦,影响速度和表面张力),作为对液滴影响动态拓扑的重要性的量度。我们表明,当$ ca_f \ ll 1 $时,朝向脊的倾斜方向的接触线速度是按线路摩擦设置的,而在倾斜方向上,接触线固定在山脊的急性角。当$ ca_f \ sim 1 $时,固定仅是临时的,直到液态蒸气接口到达形成新的接触线的下一个山脊。最后,当$ ca_f \ gg 1 $时,非平滑表面的几何详细信息几乎没有作用。

The impact of liquid drops on a rigid surface is central in cleaning, cooling and coating processes in both nature and industrial applications. However, it is not clear how details of pores, roughness and texture on the solid surface influence the initial stages of the impact dynamics. Here, we experimentally study drop impacting at low velocities onto surfaces textured with asymmetric (tilted) ridges. We define the line-friction capillary number $Ca_f={μ_f V_0}/σ$ (where $μ_f$, $V_0$ and $σ$ are the line friction, impact velocity and surface tension, respectively) as a measure of the importance of the topology of surface textures for the dynamics of droplet impact. We show that when $Ca_f \ll 1$, the contact line speed in the direction against the inclination of the ridges is set by line-friction, whereas in the direction with inclination the contact line is pinned at acute corners of the ridge. When $Ca_f \sim 1$, the pinning is only temporary until the liquid-vapor interface reaches to the next ridge where a new contact line is formed. Finally, when $Ca_f\gg 1$, the geometric details of non-smooth surfaces play little role.

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