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在钛合金基底上制备EP@PDMS@F-SiO超疏水复合涂层。

Fabrication of EP@PDMS@F-SiO Superhydrophobic Composite Coating on Titanium Alloy Substrate.

作者信息

Huang Chaoming, Qi Jinhe, Li Jie, Li Xinchi, Chen Jiawei, Fu Shuo, Lu Yanning

机构信息

College of Marine Engineering, Jimei University, Xiamen 361021, China.

Fujian Institute of Innovation for Marine Equipment Detection and Remanufacturing Industrial Technology, Xiamen 361021, China.

出版信息

Biomimetics (Basel). 2025 Jun 16;10(6):404. doi: 10.3390/biomimetics10060404.

Abstract

In this study, a preparation method of superhydrophobic composite coating based on a titanium alloy (Ti-6Al-4V) substrate is proposed. The micro-scale pit array structure was fabricated via laser etching technology. Utilizing the synergistic effects of epoxy resin (EP), polydimethylsiloxane (PDMS), and fluorinated nanosilica (F-SiO), we successfully prepared an EP@PDMS@F-SiO composite coating. The effects of the contents of EP, PDMS, and F-SiO on the surface wettability, mechanical stability, and UV durability were studied by optimizing the coating ratio through orthogonal experiments. The results show that the micro-nano composite structure formed by laser etching can effectively fix the coating particles and provide excellent superhydrophobicity on the surface. The coating retains high hydrophobicity after paper abrasion (1000 cm under a 200 g load), demonstrating the mechanical stability of the armor-like structure, High-content F-SiO coatings exhibit greater UV durability. In addition, the coating surface has low droplet adhesion and self-cleaning capabilities for efficient contaminant removal. The research provides theoretical and technical support for the design and engineering application of a non-fluorinated, environmentally friendly superhydrophobic coating.

摘要

在本研究中,提出了一种基于钛合金(Ti-6Al-4V)基体的超疏水复合涂层制备方法。通过激光蚀刻技术制备了微尺度凹坑阵列结构。利用环氧树脂(EP)、聚二甲基硅氧烷(PDMS)和氟化纳米二氧化硅(F-SiO)的协同效应,成功制备了EP@PDMS@F-SiO复合涂层。通过正交实验优化涂层比例,研究了EP、PDMS和F-SiO含量对表面润湿性、机械稳定性和紫外线耐久性的影响。结果表明,激光蚀刻形成的微纳复合结构能够有效地固定涂层颗粒,并在表面提供优异的超疏水性。涂层在纸张磨损(200 g载荷下1000 cm)后仍保持高疏水性,证明了铠甲状结构的机械稳定性,高含量F-SiO涂层表现出更高的紫外线耐久性。此外,涂层表面具有低液滴附着力和自清洁能力,可有效去除污染物。该研究为非氟化、环境友好型超疏水涂层的设计和工程应用提供了理论和技术支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90fe/12190485/02937130c67a/biomimetics-10-00404-g001.jpg

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