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首页> 外文期刊>Scientific reports. >Bridging nanocontacts to macroscale gecko adhesion by sliding soft lamellar skin supported setal array
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Bridging nanocontacts to macroscale gecko adhesion by sliding soft lamellar skin supported setal array

机译:通过滑动柔软的层状皮肤支撑的牙结石阵列桥接纳米接触层以达到大规模壁虎的粘附

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The study of the mechanism of the controlled adhesion of geckos, which is important for the design and fabrication of bio-inspired dry and reversible adhesive surfaces, is widely discussed below the setal level. In this work, the role of the soft lamellar skin in gecko toe adhesion was experimentally revealed. The lamellar skin acting as a soft spring sustains most of the normal deformation during preloading and maintains a wide range of adhesive state rather than a repulsive state. The sequential engagement and peeling off of setal array are responsible for the reliable gecko adhesion and friction control. This soft spring supported pillar structure should be adopted in future bio-inspired adhesives design. A hybrid three-legged spring/setae clamp was developed to transfer a horizontally placed silicon wafer. It indicates the importance of integration and optimization of nanoscale structures as well as the incorporation of their unique, size-dependent properties into functional macroscale devices.
机译:壁虎受控粘附的机理的研究对生物启发的干燥和可逆的粘附表面的设计和制造很重要,目前已被广泛讨论。在这项工作中,通过实验揭示了软的层状皮肤在壁虎脚趾粘附中的作用。用作软弹簧的层状蒙皮在预压期间可承受大部分正常变形,并保持较宽的粘合状态而不是排斥状态。 setal阵列的顺序接合和剥离负责可靠的壁虎附着力和摩擦力控制。这种软弹簧支撑的支柱结构应在未来的生物启发型胶粘剂设计中采用。开发了一种混合式三足弹簧/刚毛夹具,用于转移水平放置的硅片。它表明了纳米级结构的整合和优化以及将其独特的,尺寸依赖性的特性整合到功能性大型器件中的重要性。

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