高速微铣削加工铝合金各向异性疏水表面

Xinxin Zhang, Jinkai Xu, Zhongxu Lian, Zhanjiang Yu, Huadong Yu
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引用次数: 1

摘要

以水稻叶片表面微观结构为仿生对象,采用高速微铣削加工技术在7075铝合金表面加工光栅微阵列。采用扫描电镜和接触角(CA)测角仪研究了样品表面的微观形貌和疏水性能,并分析了其疏水机理。结果表明,在不改变任何化学物质的情况下,仅利用HSMM在铝合金表面构建光栅微阵列结构即可成功制备疏水表面,铝合金表面的接触角最大提高到152;83°从63.27°加工前。试样表面接触角呈现各向异性润湿性,两个方向的接触角差约为40°~60°。此外,铝合金表面的疏水性和超疏水性是亚毫米规则光栅阵列与分布在亚毫米沟槽表面的许多不规则纳米凹坑和凸点的耦合作用的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anisotropic hydrophobic surface fabricated by microstructuring of aluminum alloy using high speed micro-milling
This paper put the microstructures of rice leaf surface as bionic object, grating micro-arrays were processed on 7075 aluminum alloy surface by high speed micro-milling machining (HSMM). The micromorphologies and hydrophobic properties of specimen surfaces were studied adopting scanning electron microscopy and contact angle (CA) goniometer, and analyzing its hydrophobic mechanism. Results show that hydrophobic surfaces is successfully fabricated only by building grating micro-array structures on aluminum alloy surface using HSMM without modifying any chemical substances, the contact angle on aluminum alloy surface increased maximally to 152. 83° from 63.27° before processing. Furthermore, the contact angle on specimen surfaces appear anisotropic wettability, which the contact angle difference of two direction is about 40°~60°. In addition, the hydrophobicity and super-hydrophobicity on aluminum alloy surface is a coupling function result by both submillimetre regular grating arrays and many irregular nanoscale pits and projections distributing on submillimetre grooves surface.
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