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Impact of viscous droplets on different wettable surfaces: Impact phenomena, the maximum spreading factor, spreading time and post-impact oscillation

机译:粘性液滴对不同可湿性表面的影响:冲击现象,最大扩散因子,扩散时间和撞击后振荡

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In this paper, we experimentally investigated the impact dynamics of different viscous droplets on solid surfaces with diverse wettabilities. We show that the outcome of an impinging droplet is dependent on the physical property of the droplet and the wettability of the surface. Whereas only deposition was observed on lyophilic surfaces, more impact phenomena were identified on lyophobic and superlyophobic surfaces. It was found that none of the existing theoretical models can well describe the maximum spreading factor, revealing the complexity of the droplet impact dynamics and suggesting that more factors need to be considered in the theory. By using the modified capillary-inertial time, which considers the effects of liquid viscosity and surface wettability on droplet spreading, a universal scaling law describing the spreading time was obtained. Finally, we analyzed the post-impact droplet oscillation with the theory for damped harmonic oscillators and interpreted the effects of liquid viscosity and surface wettability on the oscillation by simple scaling analyses. (C) 2017 Elsevier Inc. All rights reserved.
机译:在本文中,我们通过各种湿润地研究了不同粘性液滴的影响动态。我们表明撞击液滴的结果取决于液滴的物质和表面的润湿性。然而,在冻干表面上观察到沉积,而在冻皮和超血管表面上鉴定出更多的冲击现象。结果发现,没有一个现有的理论模型可以很好地描述最大扩散因子,揭示了液滴冲击动态的复杂性,并提出了在理论中需要考虑更多因素。通过使用改性毛细管惯性时间,该毛细管 - 惯性时间,其考虑了液体粘度和表面润湿性对液滴扩散的影响,获得了描述扩散时间的通用缩放法。最后,我们通过简单的缩放分析分析了对阻尼谐波振荡器的理论,解释了液体粘度和表面润湿性对振荡的影响。 (c)2017年Elsevier Inc.保留所有权利。

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