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光刻仿生表面微观结构对润湿性和液滴蒸发过程的影响

Effect of Photolithographic Biomimetic Surface Microstructure on Wettability and Droplet Evaporation Process.

作者信息

Zhang Zhihao, Yan Yuying

机构信息

Faculty of Engineering, University of Nottingham, University Park, Nottingham NG7 2RD, UK.

出版信息

Biomimetics (Basel). 2024 Nov 24;9(12):724. doi: 10.3390/biomimetics9120724.

Abstract

In nature, engineering technology and daily life, wetting phenomena are widespread and have essential roles and significance. Bionics is becoming increasingly important nowadays and exploring the mechanism that influences biomimetic surface microstructure on droplet wetting process and heat and mass transfer characteristics is becoming more meaningful. In this paper, based on photolithography technology, SU-8 photoresist was used as raw material to prepare biomimetic surfaces with microstructures in various arrangements. The research results show that the wettability of biomimetic functional surfaces can be regulated by regulating the shape and arrangement of photoresist micro-pillars. At the same time, the effects of surface microstructure configuration and roughness on the heat and mass transfer processes within the droplets were also comprehensively studied. The results show that a biomimetic surface with cylindrical micro-pillars can effectively inhibit the evaporative cooling effect of the liquid-vapour interface. This effect becomes more evident with the increase in roughness, and the interface temperature difference can be reduced by up to 18%. Similarly, the biomimetic surface with cylindrical micro-pillars can also effectively promote the evaporation rate of sessile droplets, which can be increased by about 13%. In addition, the research also shows that regardless of the structure, substrate temperature changes will significantly impact the wetting phenomenon of the biomimetic surface. This study aims to guide the optimal design of biomimetic surfaces prepared based on photoresistance.

摘要

在自然界、工程技术和日常生活中,润湿现象普遍存在且具有重要作用和意义。如今,仿生学变得越来越重要,探索影响仿生表面微观结构对液滴润湿过程及传热传质特性的机制也变得更有意义。本文基于光刻技术,以SU-8光刻胶为原料制备了具有不同排列微观结构的仿生表面。研究结果表明,通过调节光刻胶微柱的形状和排列可调控仿生功能表面的润湿性。同时,还全面研究了表面微观结构构型和粗糙度对液滴内部传热传质过程的影响。结果表明,具有圆柱形微柱的仿生表面能有效抑制液-气界面的蒸发冷却效应。随着粗糙度增加,这种效应变得更加明显,界面温差可降低达18%。同样,具有圆柱形微柱的仿生表面也能有效促进固着液滴的蒸发速率,可提高约13%。此外,研究还表明,无论结构如何,基底温度变化都会显著影响仿生表面的润湿现象。本研究旨在指导基于光刻胶制备的仿生表面的优化设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e84b/11672989/e17de9f1097d/biomimetics-09-00724-g001.jpg

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