Suppressed Droplet Splashing on Positively Skewed Surfaces for High‐Efficiency Evaporation Cooling

Author:

Wang Zhaochang123,Liu Xiaojun1,Ji Jiawei1,Guo Yuhang1,Zhu Yongqing1,Zhang Guotao2,Tong Baohong2,Jiao Yunlong1ORCID,Liu Kun1

Affiliation:

1. Institute of Tribology Hefei University of Technology Hefei 230009 China

2. School of Mechanical Engineering Anhui University of Technology Maanshan 243032 China

3. State Key Laboratory of Tribology in Advanced Equipment Tsinghua University Beijing 100084 China

Abstract

AbstractTwo types of functional surfaces with the same roughness but completely different surface topographies are prepared, namely positively skewed surfaces filled with micropillar arrays (Sa ≈4.4 µm, Ssk >0) and negatively skewed surfaces filled with microcavity arrays (Sa ≈4.4 µm, Ssk <0), demonstrating promoting droplet splashing. Remarkably, the critical Weber number for generating satellite droplets on the negatively skewed surfaces is significantly lower than that on the positively skewed surfaces, indicating that the negatively skewed surface with microcavity arrays is more likely to promote droplet splashing. It is mainly attributed to the fact that air on the negatively skewed surface can make the liquid film take on a Cassie‐Baxter state on the surface so that the stabilizing capillary force of the liquid film exceeds the destabilizing stress of the air film. Moreover, the surface topography promoting droplet spreading and the mechanical properties of three‐phase moving contact lines are analyzed from the perspective of microscopic interface mechanics. Finally, it is demonstrated the designed positively skewed surfaces can be employed for large‐area heat dissipation by means of high‐efficiency evaporation.

Funder

Natural Science Foundation of Anhui Province

National Natural Science Foundation of China

Publisher

Wiley

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