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Bioinspired avian feather designs

机译:受生物启发的禽羽毛设计

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Avian flight feathers have developed, through evolution, an intricate architecture with multi-functional structures that are essential for flight. These lightweight and resilient appendages motivate the invention of bioinspired designs. Here we fabricate various structures inspired by significant concepts identified in the feather vane and shaft. Bioinspired prototypes based on the feather vanes unique adhesive mechanism and directional permeability are explored, and feather-shaft inspired designs motivated by the highly ordered hierarchical fiber-matrix structure in the feather are fabricated. The exquisite architecture of the rachis, consisting of a hollow tube filled with foam, is simulated in a bioinspired design that demonstrates the synergy of the two components in enhancing the flexural strength. These structures provide an enhanced understanding of the mechanisms operating in feathers and suggest highly efficient solutions which can contribute to creating innovative materials inspired by the feather.
机译:鸟类的飞羽通过进化发展出了一种复杂的结构,具有对飞行至关重要的多功能结构。这些轻巧而有弹性的附件激发了生物灵感设计的发明。在这里,我们根据羽毛叶片和杆身中的重要概念来制造各种结构。探索了基于羽毛叶片独特粘合机制和方向渗透性的生物启发原型,并制作了由羽毛中高度有序的分层纤维矩阵结构所激发的羽毛轴启发性设计。由充满泡沫的空心管组成的精巧的rachis,采用生物启发设计进行了模拟,证明了这两种成分在增强抗弯强度方面的协同作用。这些结构使人们对羽毛的工作机理有了更深入的了解,并提出了高效的解决方案,这些解决方案有助于创造出受羽毛启发的创新材料。

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