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首页> 外文期刊>Progress in Natural Science >Morphology and contact mechanics influence adhesive characteristics of Dung Beetle's bristle and Gecko's setae
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Morphology and contact mechanics influence adhesive characteristics of Dung Beetle's bristle and Gecko's setae

机译:形态和接触力学影响粪甲虫的鬃毛和壁虎的刚毛的黏附特性

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Geckos ( Gekko gecko) use their hairy setae to adhere on various solid surfaces and dung beetles ( Copris ochus Motschul sky) use their hairy bristles to anti-adhere in sticky environments. We study why two hairy systems express a conflict in functions by using SEM, histological approaches and functional experiments. Adhesion models and various parameters were collected and analyzed. Based on the morphological data and functional experimental results carried out by natural and denatured gecko setae and beetle bristles, we first demonstrated that the stiffness along the hair is 1000 to 30000 times that perpendicular to the hair. This stiffness difference is the key factor leading to the two hairy systems' functional differences. Slope of gecko setae reduces contact stiffness, increases contact points and real contact area that results in amazing adhesive abilities. On the other hand, stiff bristles in a beetle have higher contact stiffness, which reduces the real contact area and decreases the adhesion between two contact surfaces. Deformation of gecko setae destroys the hierarchical structure, increases the contact stiffness and results in a decrease of adhesion forces. Similarly, deformation of beetle bristles destroys the erect structure of the hair, interconnects the separated bristles and thus decreases the anti-adhesive functions. These observations inspire us in designing anti-adhesive and adhesive biomimetic systems.
机译:壁虎(Gekko gecko)使用其毛状刚毛粘附在各种固体表面上,而and虫(Copris ochus Motschul sky)使用其毛状硬毛在粘性环境中防粘连。我们通过使用SEM,组织学方法和功能实验研究了为什么两个多毛系统在功能上表现出冲突。收集并分析粘附模型和各种参数。根据自然和变性的壁虎刚毛和甲虫刚毛的形态学数据和功能性实验结果,我们首先证明了沿着头发的刚度是垂直于头发的1000到30000倍。这种刚度差异是导致两个多毛系统功能差异的关键因素。壁虎刚毛的倾斜度降低了接触刚度,增加了接触点和实际接触面积,从而产生了惊人的粘合能力。另一方面,甲虫中的硬毛具有较高的接触刚度,从而减小了实际接触面积并降低了两个接触面之间的附着力。壁虎刚毛的变形破坏了层次结构,增加了接触刚度并导致粘附力降低。类似地,甲虫硬毛的变形破坏了头发的直立结构,使分开的硬毛相互连接,从而降低了防粘功能。这些发现启发了我们设计抗粘性和粘性仿生系统。

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