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Development of wet adhesion of honeybee arolium incorporated polygonal structure with three-phase composite interfaces
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作者 Lulu LIANG Jieliang ZHAO +5 位作者 Qun NIU Li YU Xiangbing WU Wenzhong WANG Shaoze YAN Zhenglei YU 《Friction》 SCIE EI CAS CSCD 2024年第2期215-230,共16页
Inspired by the dynamic wet adhesive systems in nature,various artificial adhesive surfaces have been developed but still face different challenges.Crucially,the theoretical mechanics of wet adhesives has never been s... Inspired by the dynamic wet adhesive systems in nature,various artificial adhesive surfaces have been developed but still face different challenges.Crucially,the theoretical mechanics of wet adhesives has never been sufficiently revealed.Here,we develop a novel adhesive mechanism for governing wet adhesion and investigate the biological models of honeybee arolium for reproducing the natural wet adhesive systems.Micro-nano structures of honeybee arolium and arolium-prints were observed by Cryogenic scanning electron microscopy(Cryo-SEM),and the air pockets were found in the contact interface notably.Subsequently,the adhesive models with a three-phase composite interface(including air pockets,liquid secretion,and hexagonal frames of arolium),were formed to analyze the wet adhesion of honeybee arolium.The results of theoretical calculations and experiments indicated an enhanced adhesive mechanism of the honeybee by liquid self-sucking effects and air-embolism effects.Under these effects,normal and shear adhesion can be adjusted by controlling the proportion of liquid secretion and air pockets in the contact zone.Notably,the air-embolism effects contribute to the optimal coupling of smaller normal adhesion with greater shear adhesion,which is beneficial for the high stride frequency of honeybees.These works can provide a fresh perspective on the development of bio-inspired wet adhesive surfaces. 展开更多
关键词 honeybee arolium air pockets wet adhesion a three-phase interface self-sucking effects air-embolism effects
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一类蚂蚁黏附系统的实验研究
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作者 李新然 孙冬雅 +2 位作者 谢季佳 陈少华 王海军 《力学与实践》 CSCD 北大核心 2011年第5期51-56,共6页
以家蚁为研究对象,利用扫描电镜、光学显微镜等仪器对其足部微观黏附结构进行了实验观察,研究了家蚁在洁净玻璃板上爬行的黏附机理,并观察了不同表面粗糙度、倾斜度的玻璃板及蜡表面上蚂蚁的爬行行为.实验结果表明此类蚂蚁的黏附主要依... 以家蚁为研究对象,利用扫描电镜、光学显微镜等仪器对其足部微观黏附结构进行了实验观察,研究了家蚁在洁净玻璃板上爬行的黏附机理,并观察了不同表面粗糙度、倾斜度的玻璃板及蜡表面上蚂蚁的爬行行为.实验结果表明此类蚂蚁的黏附主要依赖于足部缩放自如的囊状中垫.玻璃板粗糙度及倾斜度对蚂蚁爬行行为无明显影响,而随着蜡表面倾斜度的增大,家蚁的黏附爬行能力逐渐降低,最终在一定倾斜度的蜡表面黏附失效. 展开更多
关键词 蚂蚁 黏附系统 中垫 表面
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