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使用碳纤维刷电极通过放电加工一步制备超疏水表面

One-Step Preparation of a Superhydrophobic Surface by Electric Discharge Machining with a Carbon Fiber Brush Electrode.

作者信息

Ouyang Ligeng, Liu Jiangwen, Xiao Yingjie, Zhang Yonghui, Xie Guie, Zhang Hao, Yu Zhaoqin

机构信息

State Key Laboratory of Precion Electronic Manufacturing Technology and Equipment, Guangdong University of Technology, Guangzhou 510006, P. R. China.

Guangzhou Key Laboratory of Nontraditional Machining and Equipment, Guangdong University of Technology, Guangzhou 510006, P. R. China.

出版信息

Langmuir. 2022 Aug 16;38(32):9853-9862. doi: 10.1021/acs.langmuir.2c00916. Epub 2022 Aug 7.

Abstract

Superhydrophobic surfaces are extremely susceptible to damage, which can lead to a sharp decrease in their service life and physical properties. Therefore, developing methods to impart superhydrophobic surfaces with excellent wear resistance is crucial. In this article, a flexible carbon fiber brush was utilized as an electrode to fabricate micro-/nano-structures on a grooved surface via electric discharge machining in one step, resulting in a superhydrophobic coating with excellent wear resistance. Carbon fiber brushes exhibit several notable properties, including excellent flexibility, conductivity, and high temperature resistance. Carbon fiber brushes can adapt to the complex inner walls of grooves. Many nano-structures were fabricated on the grooves via pulse discharge, which resulted in a superhydrophobic surface with excellent wear resistance. The contact angle (CA) and sliding angle of the surface after discharge were 156.3 and 2°, respectively. The processed surface exhibits superior corrosion resistance compared to the stainless-steel substrate. The influence of the micro-groove shapes on wear resistance was tested. The results showed that, after 500 cm of wear, the shallow grooves retained their superhydrophobicity with a CA of 150.1°.

摘要

超疏水表面极易受损,这会导致其使用寿命和物理性能急剧下降。因此,开发赋予超疏水表面优异耐磨性的方法至关重要。在本文中,一种柔性碳纤维刷被用作电极,通过放电加工一步在带槽表面制备微/纳米结构,从而得到具有优异耐磨性的超疏水涂层。碳纤维刷具有若干显著特性,包括出色的柔韧性、导电性和耐高温性。碳纤维刷能够适应槽的复杂内壁。通过脉冲放电在槽上制备了许多纳米结构,从而得到具有优异耐磨性的超疏水表面。放电后表面的接触角(CA)和滑动角分别为156.3°和2°。与不锈钢基体相比,加工后的表面具有优异的耐腐蚀性。测试了微槽形状对耐磨性的影响。结果表明,在磨损500厘米后,浅槽仍保持其超疏水性,接触角为150.1°。

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