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Approximating gecko setae via direct laser lithography

机译:通过直接激光光刻近似壁虎刚毛

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The biomimetic replication of dry adhesion present in the gecko's foot has attracted great interest in recent years. All the microfabrication techniques used so far were not able to faithfully reproduce the hierarchical and complex three-dimensional geometry of the gecko's setae, with features at the micro- and nanoscale, thus reducing the effectiveness that such conformal morphology could provide. By means of direct laser lithography we fabricated artificial hairs that faithfully reproduce the natural model. This technique allows the fabrication of three-dimensional microstructures with outstanding results in terms of reproducibility and resolution at the micro- and nanoscale. It was possible to get very close to the morphology of the natural gecko setae, especially concerning the hierarchical shape. We designed several morphologies for the setae and studied the effects in terms of adhesion and friction performances compared to the natural counterpart, showing the interplay between morphology, dimensional scaling and materials. Direct laser lithography promises great applications in the biomimetics field, paving the way to the implementation of the concept of hierarchical bioinspired dry adhesives.
机译:壁虎脚下存在的干粘连的仿生复制引起了近年来的极大兴趣。到目前为止所使用的所有微制造技术都无法忠实地既能够忠实地再现壁虎塞拉的分层和复杂的三维几何形状,在微型和纳米级具有特征,从而降低了这种共形形态可以提供的有效性。通过直接激光光刻,我们制造了忠实地重现自然模型的人造毛发。该技术允许在微型和纳米级的再现性和分辨率方面制造具有优异结果的三维微结构。可以非常接近天然壁虎塞拉的形态,特别是关于等级形状。我们为塞拉设计了几种形态,与自然对应物相比,在粘附和摩擦性能方面研究了效果,显示了形态学,尺寸缩放和材料之间的相互作用。直激光光刻在生物体域中承诺很大的应用,铺平了途径的分层生物透露干粘合剂的概念。

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