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A Study of Functional Micro/nano Structural Surfaces in Bionic Applications
Xu, Zhenzhen; Kong, Lingbao
通讯作者Kong, Lingbao
会议名称2017 7th International Conference on Manipulation, Manufacturing and Measurement on the Nanoscale (3M-NANO)
会议日期AUG 07-11, 2017
会议地点Shanghai, PEOPLES R CHINA
英文摘要

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.


英文关键词Functional structures Micro/nano structures Nepenthes Characterization Ultra-precision machining
来源出版物2017 IEEE INTERNATIONAL CONFERENCE ON MANIPULATION, MANUFACTURING AND MEASUREMENT ON THE NANOSCALE (3M-NANO)
ISSN2373-5422
出版年2017
页码206-209
EISBN978-1-5386-1081-7
出版者IEEE
类型Proceedings Paper
语种英语
国家Peoples R China
收录类别CPCI-S
WOS记录号WOS:000426927300044
WOS类目Engineering, Manufacturing ; Engineering, Electrical & Electronic ; Nanoscience & Nanotechnology
WOS研究方向Engineering ; Science & Technology - Other Topics
资源类型会议论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/306006
作者单位Fudan Univ, Shanghai Engn Res Ctr Ultra Precis Opt Mfg, Shanghai, Peoples R China
推荐引用方式
GB/T 7714
Xu, Zhenzhen,Kong, Lingbao. A Study of Functional Micro/nano Structural Surfaces in Bionic Applications[C]:IEEE,2017:206-209.
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