首页|Rapid surface texturing to achieve robust superhydrophobicity,controllable droplet impact,and anti-frosting performances

Rapid surface texturing to achieve robust superhydrophobicity,controllable droplet impact,and anti-frosting performances

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Robust superhydrophobic surfaces with excellent capacities of repelling water and anti-frosting are of importance for many mechanical components.In this work,wear-resistant superhydrophobic surfaces were fabricated by curing a mixture of polyurethane acrylate(PUA)coating and 1H,1H,2H,2H-Perfluorodecyltrichlorosilane(HFTCS)on titanium alloy(TC4)surfaces decorated with micropillars pattern,thus,composite functional surfaces with PUA coating in the valleys around the micropillars pattern of TC4 were achieved.Apparent contact angle on fabricated surfaces could reach 167º.Influences of the geometric parameters of micropillars pattern on the apparent contact angle were investigated,and the corresponding wear-resistant property was compared.Droplet impact and anti-frosting performances on the prepared surfaces were highlighted.An optimized design of surface texture with robust superhydrophobicity,controllable droplet impact,and anti-frosting performances was proposed.This design principle is of promising prospects for fabricating superhydrophobic surfaces in traditional mechanical systems.

surface texturerobust superhydrophobicwear-resistantdroplet impactanti-frosting

Qingwen DAI、Lei CHEN、Jiabao PAN、Liping SHI、Dameng LIU、Wei HUANG、Xiaolei WANG

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College of Mechanical and Electrical Engineering,Nanjing University of Aeronautics&Astronautics,Nanjing 210016,China

School of Mechanical Engineering,Anhui Polytechnic University,Wuhu 241000,China

School of Mechanical Engineering,Anhui University of Technology,Ma'anshan 243032,China

State Key Laboratory of Tribology in Advanced Equipment,Department of Mechanical Engineering,Tsinghua University,Beijing 100084,China

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国家自然科学基金Tribology Science Fund of State Key Laboratory of TribologyAlexander von Humboldt Foundation

51805252SKLTKF21B02

2024

摩擦(英文)

摩擦(英文)

CSTPCDEI
ISSN:2223-7690
年,卷(期):2024.12(2)
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