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Biologically Inspired Mushroom-Shaped Adhesive Microstructures

机译:生物启发的蘑菇形胶粘剂微结构

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Adhesion is a fundamental phenomenon with great importance in technology, in our everyday life, and in nature. In this article, we review physical interactions that resist the separation of two solids in contact. By using examples of biological attachment systems, we summarize and categorize various principles that contribute to the so-called gecko effect. Emphasis is placed on the contact geometry and in particular on the mushroom-shaped geometry, which is observed in long-term biological adhesive systems. Furthermore, we report on artificial model systems with this bio-inspired geometry and demonstrate that surface microstructures with this geometry are promising candidates for technical applications, in which repeatable, reversible, and residue-free adhesion under different environmental conditions-such as air, fluid, and vacuum-is required. Various applications in robotic systems and in industrial pick-and-place processes are discussed.
机译:附着力是一种基本现象,在技术,我们的日常生活和自然界中都非常重要。在本文中,我们回顾了阻止相互作用的两种固体分离的物理相互作用。通过使用生物附着系统的示例,我们总结并归纳了导致所谓壁虎效应的各种原理。重点放在接触几何形状上,尤其是蘑菇形几何形状上,这在长期生物粘附系统中可以观察到。此外,我们报告了具有这种受生物启发的几何形状的人造模型系统,并证明具有这种几何形状的表面微结构是有希望的技术应用候选者,其中在不同的环境条件下(例如空气,流体)可重复,可逆和无残留粘附,并且需要真空。讨论了机器人系统和工业取放过程中的各种应用。

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