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基于飞秒激光实现有效拒液性的金属基注入滑液多孔表面(SLIPSs)的设计

Design of Metal-Based Slippery Liquid-Infused Porous Surfaces (SLIPSs) with Effective Liquid Repellency Achieved with a Femtosecond Laser.

作者信息

Fang Zheng, Cheng Yang, Yang Qing, Lu Yu, Zhang Chengjun, Li Minjing, Du Bing, Hou Xun, Chen Feng

机构信息

School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

State Key Laboratory for Manufacturing System Engineering and Shaanxi Key Laboratory of Photonics Technology for Information, School of Electronic Science and Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Micromachines (Basel). 2022 Jul 22;13(8):1160. doi: 10.3390/mi13081160.

Abstract

Slippery liquid-infused porous surfaces (SLIPSs) have become an effective method to provide materials with sliding performance and, thus, achieve liquid repellency, through the process of infusing lubricants into the microstructure of the surface. However, the construction of microstructures on high-strength metals is still a significant challenge. Herein, we used a femtosecond laser with a temporally shaped Bessel beam to process NiTi alloy, and created uniform porous structures with a microhole diameter of around 4 µm, in order to store and lock lubricant. In addition, as the lubricant is an important factor that can influence the sliding properties, five different lubricants were selected to prepare the SLIPSs, and were further compared in terms of their sliding behavior. The temperature cycle test and the hydraulic pressure test were implemented to characterize the durability of the samples, and different liquids were used to investigate the possible failure under complex fluid conditions. In general, the prepared SLIPSs exhibited superior liquid repellency. We believe that, in combination with a femtosecond laser, slippery liquid-infused porous surfaces are promising for applications in a wide range of areas.

摘要

通过将润滑剂注入表面微观结构的过程,注入滑液的多孔表面(SLIPSs)已成为一种赋予材料滑动性能从而实现拒液性的有效方法。然而,在高强度金属上构建微观结构仍然是一项重大挑战。在此,我们使用具有时间整形贝塞尔光束的飞秒激光对镍钛合金进行加工,创建了微孔直径约为4 µm的均匀多孔结构,以便储存和锁定润滑剂。此外,由于润滑剂是影响滑动性能的重要因素,我们选择了五种不同的润滑剂来制备SLIPSs,并进一步比较它们的滑动行为。进行了温度循环测试和液压测试以表征样品的耐久性,并使用不同液体研究复杂流体条件下可能的失效情况。总体而言,制备的SLIPSs表现出优异的拒液性。我们相信,结合飞秒激光,注入滑液的多孔表面在广泛领域具有应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f0d/9332264/81ab91ba7a93/micromachines-13-01160-g001.jpg

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