功能微纳结构表面在仿生中的应用研究

Zhenzhen Xu, L. Kong
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引用次数: 1

摘要

近年来,仿生结构和功能材料的研究受到越来越多的关注。为了深入了解功能性微纳米结构,从而为设计和制造此类微纳米结构表面提供理论基础,本文对功能性微纳米结构表面进行了初步的研究。首先对仿生学中已有的功能微纳结构进行了简要的综述,然后以蜈蚣草(Nepenthes Alata)为例,提出了一种适用于超精密加工技术生产的蜈蚣草(Nepenthes Alata)表面的解析模型。在简要综述中,现有的功能性结构表面可分为三大类:具有抗粘接性能的结构表面、具有环境适应性的结构表面和具有其他特定功能的生物结构表面。对以上三类的研究工作进行了综述:(a)具有抗粘接性能的结构表面。以莲花效应启发的超疏水自洁表面、鲨鱼皮启发的低摩擦表面为例进行了介绍和说明。这种结构表面在交通运输、自洁材料、生物医药等领域有着广阔的应用前景。这引起了研究和工业界的强烈兴趣;(b)环境适应性结构面。综述并介绍了具有广阔军事应用前景的生物色素的形成机理及其应用;(c)具有特定功能的生物结构。综述了昆虫复眼、沙漠甲虫背表面、蜘蛛丝、蜈蚣胃壁表面等结构的最新研究进展。然后,在现有研究的基础上,进一步研究了无额外能量输入的液体在豚草胃壁表面单向扩散的机理,并设计了具有定向输送功能的典型结构,其中一种结构具有无额外能量输入的定向输送功能。在此基础上,提出了仿生设计模型,并对模型参数进行了分析和优化,以获得更好的功能性能。最后对功能性微纳结构表面的未来研究进行了展望。
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A study of functional micro/nano structural surfaces in bionic applications
Increasing research attentions have been paid to the bionic structures and functional materials in recent years. In order to gain the insights into functional micro/nano-structures and hence form the theoretical basis for design and fabrication of such micro/nano-structural surfaces, this paper conducts a preliminary research study on functional micro/nano structural surfaces. A short review is firstly undertaken for the existing functional micro/nano structures in bionics, and then an analytical model for the Nepenthes Alata's peristome surface is proposed, as an example, which is applicable for production by ultra-precision machining technology. In the short review, existing functional structural surfaces are classified into three categories: structural surfaces with anti-adhesive properties, environmental adaptability structural surfaces, and biological structures with other specific functions. Research work for the above three categories are reviewed: (a) The structural surface with anti-adhesive properties. Super-hydrophobic self-cleaning surface inspired by lotus effect, low friction surface inspired by shark skin, as examples, are introduced and explained. Such structural surfaces have wide and promising applications in the fields of transportation, self-cleaning materials, biomedicine and so on. This has gained intensive interest from research and industry; (b) Environmental adaptability structural surface. The formation mechanism and its application of biological colors with broad military application prospects are reviewed and introduced; (c) Biological structure with specific functions. The latest research progress of insect compound eyes, desert beetle back surface, spider silk, peristome surface of Nepenthes alata and other structures are reviewed in this part. After that, the mechanism of unidirectional liquid spreading without extra energy input on the peristome surface of Nepenthes alata was further investigated, and the structures are also designed to improve the functions based on the existing research which is on the structures of the Nepenthes with one of the typical structures having the function of directional transport without extra power supply. Furthermore, a bionic design model was proposed and the model parameters were analyzed and optimized to achieve better functional performance. Future study for functional micro/nano structural surfaces is also suggested in the end of the paper.
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