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Impact energy absorption of bio-inspired tubular sections with structural hierarchy

机译:具有结构层次的生物启发管状截面的冲击能量吸收

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Structural hierarchy in nature can be mimicked in order to develop novel composites and structures with desirable properties. In this study, hierarchy is introduced at multiple length scales into tubular sections that can be utilised as energy absorbing systems in various industries. The proposed hierarchical tubular section is inspired by the micro- to nano-architecture of biological materials, such as tendon and muscle, which can be mimicked by packing smaller tubes into a tube of a higher hierarchical level. The process can be repeated for creating tubular sections of higher orders of structural hierarchy, regardless of size or choice of materials. Numerical experiment has revealed that the impact energy absorption capability can be improved significantly when hierarchy is introduced and greater enhancement is achieved for higher-order hierarchical sections. A parametric study has been undertaken, and with the use of dimensionless parameters, the robustness and the generality of the phenomenon are demonstrated.
机译:可以模仿自然中的结构层次,以便开发具有所需特性的新型复合材料和结构。在这项研究中,将层次结构以多个长度尺度引入到管状截面中,这些截面可以用作各种行业中的能量吸收系统。所提议的分层管状截面是受生物材料(例如腱和肌肉)的微纳米结构启发的,可以通过将较小的管子包装到更高分层的管子中来模仿。可以重复此过程以创建结构层次较高的管状部分,而不管尺寸或材料选择如何。数值实验表明,引入层次结构可以显着提高冲击能量吸收能力,对高阶层次部分可以实现更大的增强。已经进行了参数研究,并通过使用无量纲参数,证明了该现象的鲁棒性和普遍性。

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