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具有微/纳分级结构的钛合金超疏水表面制备及润湿性转变

Superhydrophobic Surface Preparation and Wettability Transition of Titanium Alloy with Micro/Nano Hierarchical Texture.

作者信息

Yang Zhiru, Zhu Chongchong, Zheng Nan, Le Dezheng, Zhou Jianzhong

机构信息

School of Mechanical Engineering, Jiangsu University, Zhenjiang 212013, Jiangsu, China.

出版信息

Materials (Basel). 2018 Nov 7;11(11):2210. doi: 10.3390/ma11112210.

Abstract

Microstructures are applied to various hydrophobic/hydrophilic surfaces due to the role of adjusting the surface wettability. In this paper, a 1064 nm pulsed picosecond laser was applied to prepare a micro/nano hierarchical structure on the surface of the titanium alloy (Ti-6Al-4V). The microstructures consist of dimple arrays with various diameters, depths, and areal densities. They are obtained by controlling the pulse energy and the number of pulses. The nanostructures are periodic ripples, which are defined as laser-induced periodic surface structure (LIPSS), and the dimensional parameter of LIPSS can be adjusted by changing the laser energy density and scanning speed. The contact angles of various laser textured surfaces were measured. It is found that the contact angle increases with the density of micro-textured surface increases, and the wetting state of textured surfaces conforms to the Cassie model. Some laser processed samples were subjected to low-temperature annealing treatment. It is observed that the low-temperature annealing process can accelerate the surface wettability transition significantly, which is attributed to the change of the hydroxyl groups on the surface. Finally, a superhydrophobic surface with the maximum contact angle of 144.58° is obtained.

摘要

由于具有调节表面润湿性的作用,微结构被应用于各种疏水/亲水表面。在本文中,采用1064 nm脉冲皮秒激光在钛合金(Ti-6Al-4V)表面制备了微/纳分级结构。微结构由具有不同直径、深度和面积密度的凹坑阵列组成,通过控制脉冲能量和脉冲数获得。纳米结构是周期性波纹,被定义为激光诱导周期性表面结构(LIPSS),其尺寸参数可通过改变激光能量密度和扫描速度来调节。测量了各种激光纹理化表面的接触角。发现接触角随着微纹理表面密度的增加而增大,纹理化表面的润湿状态符合Cassie模型。对一些激光加工样品进行了低温退火处理。观察到低温退火过程可显著加速表面润湿性转变,这归因于表面羟基的变化。最终获得了最大接触角为144.58°的超疏水表面。

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