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Superhydrophobic Titanium Surface Micro/Nanostructures Induced by Femtosecond Laser_上海光学精密机械研究所

上海光学精密机械研究所 免费考研网/2018-05-06

中文题目: 飞秒激光诱导超疏水钛表面微纳结构
外文题目: Superhydrophobic Titanium Surface Micro/Nanostructures Induced by Femtosecond Laser
作者: 洋怀海; 王卓; 范文中; 王承伟; 李虹瑾; 柏锋; 钱静; 赵全忠
刊名: 中国激光
年: 2016 卷: 43 期: 8 页: 802002
中文关键词:
激光制造; 飞秒激光加工; 超疏水; 钛表面; 表面微纳结构
英文关键词:

laser manufacturing; femotosecond laser machining; superhydrophobicity; titanium surface; surface micro/nanostructures
中文摘要:
提出一种利用线偏振飞秒脉冲激光制备超疏水钛表面的方法。利用飞秒脉冲激光在钛片上辐照扫描诱导出表面微纳结构,以提高钛表面的粗糙度,并结合低表面能物质的超声处理得到具有超疏水特性的钛表面。通过改变飞秒脉冲激光辐照的能流密度来改变钛表面的粗糙度,得到不同润湿性能的钛表面。将制备的疏水和超疏水钛表面在大气环境中放置三个月,并对其表面润湿性能进行测量,结果表明,与三个月前相比,其表面润湿性能基本保持不变,即制备的钛表面具有稳定的疏水和超疏水性。

英文摘要:
A method to fabricate superhydrophobic titanium (Ti) surface using linearly polarized femtosecond pulsed laser is proposed in this paper. A femtosecond pulsed laser is used to irradiate Ti surfaces to scan and induce the surface micro/nanostructures, so as to improve the surface roughness. The superhydrophobicity of the Ti surfaces is realized by combing ultrasonic treatment of low surface energy material. The roughnesses of Ti surfaces are changed by tuning the energy flux density of femtosecond pulsed laser irradiation, and different wettabilities of Ti surfaces are realized. The fabricated Ti surfaces with hydrophobicity and superhydrophobicity are placed in atmosphere for three months, and the wettabilities of the surfaces are measured. The results show that the wettabilities of the surfaces are nearly the same after three months, namely the fabricated Ti surfaces still exhibit stable hydrophobicity and superhydrophobicity.


文献类型: 期刊论文
正文语种: Chinese
收录类别: CSCDEI
DOI: 10.3788/CJL201643.0802002


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