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国家自然科学基金(51175020)

作品数:2 被引量:16H指数:2
相关作者:张力文张德远张鹏飞陈华伟更多>>
相关机构:北京航空航天大学更多>>
发文基金:国家自然科学基金更多>>
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基于树蛙脚掌的仿生六棱柱表面边界摩擦研究被引量:2
2016年
湿润环境下软材料的摩擦受固液气多介质作用,一直都是摩擦理论的难点.师法自然,我们从自然界获取灵感,由树蛙脚掌能在湿环境中产生极强的摩擦力,来研究软材料在湿环境中的摩擦特性.本文表征了树蛙脚掌的结构和摩擦力,发现在边界摩擦状态下,界面间极薄的液膜有助于增大摩擦力.在树蛙脚掌湿摩擦力的启发下,设计制造出了一种仿生六棱柱增摩表面.通过对摩擦力表征发现,其边界摩擦能达到干摩擦的50倍.与光滑表面相比,仿生六棱柱表面能够产生稳定且持久的边界摩擦力,六棱柱表面亲水比疏水也有着更优异的边界摩擦性能.该研究结论有助于人们进一步认识软材料的湿摩擦机理,可以进一步帮助设计制造更强的湿吸附仿生表面.
张力文陈华伟张鹏飞张德远
关键词:树蛙黏液湿摩擦
Biomimetic Drag Reduction Study on Herringbone Riblets of Bird Feather被引量:14
2013年
Birds have gradually formed various excellent structures such as streamlined shape and hollow shaft of feather to improve their flying performance by millions of years of natural selection. As typical property of bird feather, herringbone riblets align along the shaft of each feather, which is caused by perfect link of barbs, especially for the primary and secondary feathers of wings. Such herringbone riblets of feather are assumed to have great impact on drag reduction. In this paper, microstructures of secondary feathers of adult pigeons are investigated by SEM, and their structural parameters are statistically obtained. Based on quantitative analysis of feather structure, novel biomimetic herringbone riblets with narrow smooth edge are proposed to reduce surface drag. In comparison with traditional microgroove riblets and other drag reduction structures, the drag reduction rate of the proposed biomimetic herringbone riblets is experimentally clarified up to 16%, much higher than others. Moreover, the drag reduction mechanism of herringbone riblets are also confirmed and exploited by CFD.
Huawei ChenFugang RaoXiaopeng ShangDeyuan ZhangIchiro Hagiwara
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