Liu Yanwei, Wang Hao, Li Jiangchao, Li Pengyang, Li Shujuan
Key Laboratory of NC Machine Tools and Integrated Manufacturing Equipment of the Ministry of Education, Xi'an University of Technology, Xi'an 710048, China.
School of Mechanical and Precision Instrument Engineering, Xi'an University of Technology, Xi'an 710048, China.
Biomimetics (Basel). 2024 Mar 1;9(3):149. doi: 10.3390/biomimetics9030149.
The gecko can achieve flexible climbing on various vertical walls and even ceilings, which is closely related to its unique foot adhesion system. In the past two decades, the mechanism of the gecko adhesion system has been studied in-depth, and a verity of gecko-inspired adhesives have been proposed. In addition to its strong adhesion, its easy detachment is also the key to achieving efficient climbing locomotion for geckos. A similar controllable adhesion characteristic is also key to the research into artificial gecko-inspired adhesives. In this paper, the structures, fabrication methods, and applications of gecko-inspired controllable adhesives are summarized for future reference in adhesive development. Firstly, the controllable adhesion mechanism of geckos is introduced. Then, the control mechanism, adhesion performance, and preparation methods of gecko-inspired controllable adhesives are described. Subsequently, various successful applications of gecko-inspired controllable adhesives are presented. Finally, future challenges and opportunities to develop gecko-inspired controllable adhesive are presented.
壁虎能够在各种垂直墙壁甚至天花板上实现灵活攀爬,这与其独特的足部附着系统密切相关。在过去二十年中,对壁虎附着系统的机制进行了深入研究,并提出了多种受壁虎启发的粘合剂。除了具有强大的附着力外,其易于分离也是壁虎实现高效攀爬运动的关键。类似的可控附着特性也是人工受壁虎启发粘合剂研究的关键。本文总结了受壁虎启发的可控粘合剂的结构、制备方法和应用,以供粘合剂开发参考。首先,介绍了壁虎的可控附着机制。然后,描述了受壁虎启发的可控粘合剂的控制机制、附着性能和制备方法。随后,展示了受壁虎启发的可控粘合剂的各种成功应用。最后,提出了开发受壁虎启发的可控粘合剂未来面临的挑战和机遇。