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Artificial System Inspired by Climbing Mechanism of Galium Aparine Fabricated via 3D Laser Lithography

机译:通过3D激光光刻技术制作的攀爬镓A碱的机理研究的人工系统

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摘要

In this work, we present an artificial dry adhesive system inspired by the leaf-climbing mechanisms in Galium aparine. Among the different species of climbing plants, G. aparine shows a unique capability of adhesion to a wide range of roughness and stiffness objects, mainly via its leaves, using microscopic hooks for the physical interlocking. The adaxial (upper) and abaxial (lower) leaf surfaces differ significantly in attachment properties, which depend on the direction of the applied force (ratchet-like mechanism). In order to mimic this adhesive behavior, we designed artificial abaxial and adaxial leaf hooks by extracting the morphological parameters from the natural structures. We fabricated artificial hooks at different scales (1:1, 1:2, 1:4) using Direct Laser Lithography (DLL), a technique that allows a rapid prototyping of 3D microstructures. The adhesion of the artificial systems was tested on a polyester tissue substrate, obtaining adhesive forces comparable or higher than the natural counterpart. This biomimetic approach can open new opportunities to understand nature through artificial investigations and lead to several applications in the fields of robotics and space technology.
机译:在这项工作中,我们提出了一种人工干胶系统,该系统受到了Galium aparine中的爬叶机制的启发。在不同种类的攀缘植物中,G。aparine表现出独特的粘附能力,主要通过其叶片使用微观钩子进行物理互锁,从而可以粘附到各种粗糙度和刚度的物体上。叶片正面(上)和背面背面(下)的附着特性显着不同,取决于附着力的方向(棘齿状机制)。为了模拟这种粘附行为,我们通过从自然结构中提取形态参数来设计人工的背面和背面叶片钩。我们使用直接激光光刻(DLL)制作了不同比例(1:1、1:2、1:4)的人造钩,该技术可快速制作3D微观结构的原型。在聚酯薄纸基材上测试了人造系统的附着力,获得了与天然相当或更高的附着力。这种仿生方法可以为通过人工调查了解自然的方式提供新的机会,并导致在机器人技术和太空技术领域的多种应用。

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