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液滴冲击超薄膜的衰退阶段和反弹行为。

Receding Phase and Rebound Behavior for Drop Impact onto an Ultrathin Film.

作者信息

Chen Huanchen, Chen Ningli, Mozafari Ali, Amirfazli Alidad

机构信息

Department of Mechanical Engineering, York University, Toronto, Ontario, M3J 1P3, Canada.

School of Mechatronic Engineering, Southwest Petroleum University, Chengdu 610500, China.

出版信息

Langmuir. 2021 Apr 6;37(13):3849-3857. doi: 10.1021/acs.langmuir.0c03374. Epub 2021 Mar 24.

Abstract

Experimentally, the recoil phase leading to rebound behavior for drop impact onto ultrathin oil-covered solid surfaces was studied. It was found that the oil film can rupture during the impact process when the contact angle between the drop liquid and substrate is smaller than 90°. Due to such rupture, the substrate wettability of the substrate can affect the behavior of the drop impact. The rupture of the oil film can be promoted by an increase in impact Weber number () and a decrease in the film viscosity and thickness. The effect of , oil viscosity, and film thickness on the rebound behavior of the drop was also investigated. For low-viscous oil films (5 cSt), it was shown that the smooth and circular edge of the liquid lamella is the key parameter affecting the level of rebound. The smooth rim of the lamella can cause an elongated rebound, while a lamella with a jagged rim will result in a stout rebound. For the impact cases onto oil films with medium and high viscosity, the effects of the film viscosity become more important; the rebound type can be suppressed due to the viscous dispassion. We have also shown that silicone oil can cloak the daughter drops generated in the rebound process for the first time. Due to the existence of the oil, the daughter drops do not merge even when they make contact in the air.

摘要

通过实验研究了液滴冲击超薄油覆盖固体表面时导致反弹行为的反冲阶段。研究发现,当液滴液体与基底之间的接触角小于90°时,油膜在冲击过程中会破裂。由于这种破裂,基底的润湿性会影响液滴冲击行为。油膜的破裂可通过增加冲击韦伯数()以及降低膜的粘度和厚度来促进。还研究了、油粘度和膜厚度对液滴反弹行为的影响。对于低粘度油膜(5厘沲),结果表明,液膜光滑且圆形的边缘是影响反弹程度的关键参数。液膜光滑的边缘会导致拉长的反弹,而边缘参差不齐的液膜则会导致强烈的反弹。对于冲击中高粘度油膜的情况,膜粘度的影响更为重要;由于粘性耗散,反弹类型可能会受到抑制。我们还首次表明,硅油可以掩盖反弹过程中产生的子液滴。由于油的存在,子液滴即使在空气中接触也不会合并。

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