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双层粗糙结构斜向超疏水表面的撞击脱落

Drop Impact on Oblique Superhydrophobic Surfaces with Two-Tier Roughness.

机构信息

Department of Engineering Mechanics, Tsinghua University , Beijing 100084, China.

出版信息

Langmuir. 2017 Apr 11;33(14):3556-3567. doi: 10.1021/acs.langmuir.7b00569. Epub 2017 Mar 30.

Abstract

This paper investigates the complex physical phenomenon of oblique drop impact on superhydrophobic substrates with two-tier roughness (patterned with varied submillimeter-scale posts and coated with nanoparticles). Experimental results show that the impact Weber number of drops and the solid fraction of the submillimeter-scale post structures are crucial for the outcomes of oblique drop collisions. Water droplets with 10 < We < 245 are found to rebound on all the test substrates. As the surface solid fraction decreases, four possible bouncing patterns occur in sequence: sliding rebound, stretched rebound, penetration rebound, and breakup rebound. We demonstrate that the stretched rebound, in which the drops bounce off the surface rapidly in an elongated shape without tangential retraction, allows a 10%∼30% reduction of contact time compared with conventional sliding rebound on oblique surfaces. Three types of stretched rebound are observed on substrates with moderate solid fraction (0.1 < φ < 0.5), in which the liquid detachment starts from front, center, and tail, respectively. A simple analytical argument is presented to explain the occurrence of distinct patterns. These findings are believed to provide valuable guidance to the design of self-cleaning and anti-icing surfaces under oblique liquid impacts where rapid drop shedding is profitable.

摘要

本文研究了具有两级粗糙度(亚毫米级柱体图案和纳米粒子涂层)的超疏水基底上斜向液滴冲击的复杂物理现象。实验结果表明,液滴的冲击韦伯数和亚毫米级柱体结构的固体分数对斜向液滴碰撞的结果至关重要。实验发现,10<We<245 的水滴滴在所有测试基底上均发生回弹。随着表面固体分数的降低,依次出现四种可能的回弹模式:滑动回弹、拉伸回弹、穿透回弹和破裂回弹。我们证明,与斜面上常规的滑动回弹相比,拉伸回弹使液滴在无切向回缩的情况下快速以拉长形状弹离表面,接触时间可减少 10%∼30%。在固体分数适中(0.1<φ<0.5)的基底上观察到三种类型的拉伸回弹,其中液体从前端、中心和尾部开始脱离。本文提出了一个简单的分析论点来解释不同模式的发生。这些发现有望为设计在斜向液体冲击下具有快速液滴脱落优势的自清洁和防冰表面提供有价值的指导。

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