润湿
润湿转变
支柱
表面能
接触角
入侵
纳米技术
复合材料
物理
凝聚态物理
材料科学
化学物理
机械工程
地质学
地球化学
工程类
作者
Xin He,Ben-Xi Zhang,Shuo-Lin Wang,Yifeng Wang,Yan‐Ru Yang,Xiaodong Wang,Duu‐Jong Lee
出处
期刊:Physics of Fluids
[American Institute of Physics]
日期:2021-11-01
卷期号:33 (11)
被引量:25
摘要
The Cassie–Wenzel (C–W) wetting transition has been extensively investigated; however, the wetting transition of water films on textured surfaces with different topologies, together with underlining mechanisms, is unsatisfactorily explored. In this study, the C–W wetting transition of water films on pillar-arrayed and striped surfaces is studied. The results show that, on pillar-arrayed surfaces, the free energy variation during the C–W wetting transition follows the classical wetting pathway. The free energy first increases with the intrusion of water into the asperities and then decreases after a water film touches the basal surface. However, on striped surfaces, there exist multiple partial wetting states with each one occupying a local energy-minimization configuration. Accordingly, the water film needs to overcome multiple energy barriers to realize the C–W wetting transition. Moreover, the effects of aspect ratio and intrinsic wettability of the two textured surfaces on the C–W wetting transition are discussed.
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