Evaluation and prediction of superhydrophobic surface durability using rolling wear tests and finite element analysis

  • Park, Kyeongryeol
  • Kim, Hyunjong
  • Kim, Kihwan
  • Lee, Changwoo
  • Asadi, Amir
  • ... Lee, Kyungjun
  • 외 1명
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초록

Superhydrophobic surfaces are defined by a contact angle exceeding 150 degrees, achieved through microstructural surface treatment and hydrophobic chemical coatings. These surfaces exhibit self-cleaning properties as water droplets roll off. However, their hydrophobicity can degrade under external forces, presenting challenges in evaluating durability. In this study, aluminum, copper, and titanium were selected to investigate the durability of superhydrophobic surfaces. Micro-structured superhydrophilic surfaces were coated with hydrophobic SelfAssembled Monolayers to achieve superhydrophobicity. A rolling wear tester was self-developed to apply normal forces and assess durability by measuring changes in contact angle and self-cleaning performance after specified reciprocations of a rubber roller. Optical microscopy, scanning electron microscopy (SEM), and energydispersive X-ray spectroscopy (EDS) revealed that surface properties deteriorated due to the micro/nanostructure deformation and rubber debris deposits. Finite element analysis (FEA) was conducted to compare the robustness of copper nanopillars, aluminum cubic structures, and titanium hollow cubes, providing a predictive framework for durability assessment. The study demonstrates that durability predictions based on surface deformation and structural analysis can enhance our understanding of wear mechanisms and improve the practical application of superhydrophobic surfaces in various industries. This approach offers a promising methodology for evaluating the reliability of surface micro/nano-structures under mechanical stress.

키워드

Superhydrophobic surfaceDurabilityRolling wear testSelf-cleaning effectFinite Element AnalysisREPEATABLE REPLICATIONROBUSTFABRICATIONALUMINUMTRANSPARENTSEPARATIONCOATINGSTUBE
제목
Evaluation and prediction of superhydrophobic surface durability using rolling wear tests and finite element analysis
저자
Park, KyeongryeolKim, HyunjongKim, KihwanLee, ChangwooAsadi, AmirKim, Ho JunLee, Kyungjun
DOI
10.1016/j.matdes.2025.113980
발행일
2025-05
유형
Article
저널명
Materials and Design
253