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Splashing threshold of oblique droplet impacts on surfaces of various wettability

机译:斜滴飞溅阈值影响各种润湿性的表面

摘要

Oblique drop impacts were performed at high speeds (up to 27 m/s, We > 9000) with millimetric water droplets, and a linear model was applied to define the oblique splashing threshold. Six different sample surfaces were tested: two substrate materials of different inherent surface wettability (PTFE and aluminum), each prepared with three different surface finishes (smooth, rough, and textured to support superhydrophobicity). Our choice of surfaces has allowed us to make several novel comparisons. Considering the inherent surface wettability, we discovered that PTFE, as the more hydrophobic surface, exhibits lower splashing thresholds than the hydrophilic surface of aluminum of comparable roughness. [...] Finally, by comparing oblique impacts on superhydrophobic surfaces at different impact angles, we discovered that although the pinning transition between rebounding and partial rebounding is governed primarily by the normal impact velocity, there is also a weak dependence on the tangential velocity. As a result, pinning is inhibited in oblique impacts. This led to the observation of a new behavior in highly oblique impacts on our superhydrophobic surfaces, which we named the stretched rebound, where the droplet is extended into an elongated pancake shape and rebounds while still outstretched, without exhibiting a recession phase.
机译:斜滴撞击是在高速(高达27 m / s,We> 9000)下使用毫米水滴进行的,并使用线性模型定义斜滴阈值。测试了六个不同的样品表面:两种具有不同固有表面润湿性的基材(PTFE和铝),每种材料均具有三种不同的表面光洁度(光滑,粗糙和纹理化以支持超疏水性)。我们对表面的选择使我们能够进行一些新颖的比较。考虑到固有的表面润湿性,我们发现PTFE作为疏水性更强的表面,其飞溅阈值比具有相当粗糙度的铝的亲水性表面要低。 [...]最后,通过比较不同冲击角对超疏水表面的倾斜影响,我们发现尽管反弹和部分反弹之间的钉扎转变主要由法向冲击速度决定,但对切向速度的依赖性也很弱。结果,在倾斜冲击中抑制了钉扎。这导致观察到对我们的超疏水表面产生高度倾斜冲击的新行为,我们将其称为拉伸回弹,其中液滴扩展为细长的煎饼形状,并在仍伸出时回弹,而没有出现衰退阶段。

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