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JET INITIATION AFTER DROP IMPACT ON MICRO PATTERN ED HYDROPHILIC SURFACES

机译:液滴撞击微细图案亲水表面后的射流启动

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Droplet-wall impacts are well known to produce a wide variety of outcomes such as spreading, splashing, jetting, receding, and rebounding from hydrophobic and superhydrophobic surfaces. In this work, we focus on the growth of jets that form during the partial recoil of liquid droplets that impinge upon hydrophilic substrates composed of cylindrical micro-pillars of various dimensions and distributions (i.e., height, width, pillar spacing, etc.). Micro-pillars are fabricated on the hydrophilic silicon wafers by standard microfabrication processes, including metal etch mask patterning by photolithography, metal deposition, and lift-off to achieve the designed pillar shapes and spacing, and followed by dry etching for various pillar heights. Micrometer-sized drops of glycerol mixtures impacting micro-structured wafers are investigated using high-speed video photography. Impact velocities are varied to observe the influence of Weber number on the dynamic properties of the rebounding jet and jet initiation time, as well as whether or not the jet detaches ejecting satellite droplets normal to the substrate surface. The specific influence of the micro-patterned surfaces on maximum spreading, jet formation, jet tip velocity, and jet ejection is characterized. We find that the micro-patterned substrates have a significant effect on the behavior of the drop impact and jetting mechanism. From our experiments, we find that jet velocity is approximately 4 times that of the drop impact velocity. The jet formation time is shown to follow the capillary time scale as (pD~(3/σ)_i) ~(1/2) (where p, D_i, and a are density, initial droplet diameter, and surface tension, respectively).
机译:众所周知,液滴壁的撞击会产生各种各样的结果,例如从疏水性表面和超疏水性表面散布,飞溅,喷射,后退和回弹。在这项工作中,我们专注于液滴部分后坐时形成的射流的生长,这些液滴撞击在由各种尺寸和分布(即高度,宽度,柱间距等)的圆柱微柱组成的亲水性基底上。通过标准的微细加工工艺在亲水性硅晶圆上制造微柱,包括通过光刻,金属沉积和剥离的金属蚀刻掩模图案化,以达到设计的柱体形状和间距,然后对不同的柱高进行干法蚀刻。使用高速视频摄影技术研究了影响微结构化晶圆的甘油混合物的微米级液滴。改变冲击速度以观察韦伯数对回弹射流的动力学特性和射流起始时间的影响,以及射流是否分离垂直于基底表面的喷射卫星液滴。表征了微图案表面对最大扩展,射流形成,射流尖端速度和射流喷射的特定影响。我们发现,微图案化的基材对液滴撞击和喷射机理的行为具有显着影响。从我们的实验中,我们发现射流速度大约是液滴撞击速度的4倍。射流形成时间显示为遵循(pD〜(3 /σ)_i)〜(1/2)的毛细管时间标度(其中p,D_i和a分别是密度,初始液滴直径和表面张力) 。

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