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化学表面织构对微纳粗糙化AA6082表面超疏水行为的影响

Effect of Chemical Surface Texturing on the Superhydrophobic Behavior of Micro-Nano-Roughened AA6082 Surfaces.

作者信息

Khaskhoussi Amani, Calabrese Luigi, Patané Salvatore, Proverbio Edoardo

机构信息

Department of Engineering, University of Messina, Contrada di Dio Sant'Agata, 98166 Messina, Italy.

Department of Mathematics and Computer Science, Physical Sciences and Earth Science, University of Messina, Viale F.S. D'Alcontres No. 31, 98166 Messina, Italy.

出版信息

Materials (Basel). 2021 Nov 24;14(23):7161. doi: 10.3390/ma14237161.

Abstract

Superhydrophobic surfaces on 6082 aluminum alloy substrates are tailored by low-cost chemical surface treatments coupled to a fluorine-free alkyl-silane coating deposition. In particular, three different surface treatments are investigated: boiling water, HF/HCl, and HNO/HCl etching. The results show that the micro-nano structure and the wetting behavior are greatly influenced by the applied surface texturing treatment. After silanization, all the textured surfaces exhibit a superhydrophobic behavior. The highest water contact angle (WCA, ≈180°) is obtained by HF/HCl etching. Interestingly, the water sliding angle (WSA) is affected by the anisotropic surface characteristics. Indeed, for the HF/HCl and the HNO/HCl samples, the WSA in the longitudinal direction is lower than the transversal one, which slightly affects the self-cleaning capacity. The results point out that the superhydrophobic behavior of the aluminum alloys surface can be easily tailored by performing a two-step procedure: (i) roughening treatment and (ii) surface chemical silanization. Considering these promising results, the aim of further studies will be to improve the knowledge and optimize the process parameters in order to tailor a superhydrophobic surface with an effective performance in terms of stability and durability.

摘要

通过低成本化学表面处理结合无氟烷基硅烷涂层沉积,对6082铝合金基底上的超疏水表面进行了定制。具体研究了三种不同的表面处理方法:沸水、HF/HCl和HNO/HCl蚀刻。结果表明,所采用的表面纹理处理对微纳结构和润湿行为有很大影响。硅烷化处理后,所有纹理表面均呈现超疏水行为。通过HF/HCl蚀刻获得了最高的水接触角(WCA,≈180°)。有趣的是,水滑动角(WSA)受各向异性表面特性的影响。实际上,对于HF/HCl和HNO/HCl样品,纵向的WSA低于横向的WSA,这对自清洁能力有轻微影响。结果表明,通过两步法(i)粗糙化处理和(ii)表面化学硅烷化,可以轻松定制铝合金表面的超疏水行为。考虑到这些有前景的结果,进一步研究的目的将是增进了解并优化工艺参数,以便定制出在稳定性和耐久性方面具有有效性能的超疏水表面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adc9/8658164/2d5855635328/materials-14-07161-g001.jpg

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