Liang Yunhong, Peng Jian, Li Xiujuan, Huang Jubin, Qiu Rongxian, Zhang Zhihui, Ren Luquan
Key Laboratory of Bionic Engineering (Ministry of Education, China), Jilin University, Changchun 130025, China.
State Key Laboratory of Automotive Simulation and Control, Jilin University, Changchun 130025, China.
Materials (Basel). 2017 Mar 2;10(3):254. doi: 10.3390/ma10030254.
Inspired by the array microstructure of natural superhydrophobic surfaces (lotus leaf and cicada wing), an array microstructure was successfully constructed by high speed wire electrical discharge machining (HS-WEDM) on the surfaces of a 7075 aluminum alloy without any chemical treatment. The artificial surfaces had a high apparent contact angle of 153° ± 1° with a contact angle hysteresis less than 5° and showed a good superhydrophobic property. Wettability, contact time, and the corresponding superhydrophobic mechanism of artificial superhydrophobic surface were investigated. The results indicated that the micro-scale array microstructure was an important factor for the superhydrophobic surface, while different array microstructures exhibited different effects on the wettability and contact time of the artificial superhydrophobic surface. The length (), interval (), and height () of the array microstructure are the main influential factors on the wettability and contact time. The order of importance of these factors is > > for increasing the apparent contact angle and reducing the contact time. The method, using HS-WEDM to fabricate superhydrophobic surface, is simple, low-cost, and environmentally friendly and can easily control the wettability and contact time on the artificial surfaces by changing the array microstructure.
受天然超疏水表面(荷叶和蝉翼)阵列微结构的启发,通过高速电火花线切割加工(HS-WEDM)在7075铝合金表面成功构建了阵列微结构,且无需任何化学处理。人工表面具有153°±1°的高表观接触角,接触角滞后小于5°,表现出良好的超疏水性能。研究了人工超疏水表面的润湿性、接触时间及相应的超疏水机理。结果表明,微尺度阵列微结构是超疏水表面的一个重要因素,而不同的阵列微结构对人工超疏水表面的润湿性和接触时间表现出不同的影响。阵列微结构的长度()、间距()和高度()是影响润湿性和接触时间的主要因素。对于增加表观接触角和减少接触时间,这些因素的重要性顺序为 > > 。利用HS-WEDM制备超疏水表面的方法简单、低成本且环保,通过改变阵列微结构可以轻松控制人工表面的润湿性和接触时间。