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Crashworthiness analysis of thin-walled bio-inspired multi-cell corrugated tubes under quasi-static axial loading

机译:薄壁生物启发式多室波纹管在准静态轴向载荷下的耐撞性分析

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This paper proposes a bio-inspired multi-cell corrugated tube for use in energy absorption. The proposed structure consists of two parts: an inner rib and a corrugated tube into which the inner rib is inserted. The structure of the corrugated tube is specified using a cosine expression based on two parameters, that is, the number of cosine wave crests and their amplitude. Two inner ribs with different sections (X-shaped and Y-shaped) were designed and the crashworthiness of the resulting tubes was analyzed. The crashworthiness was determined using the finite-element program LS-DYNA. The numerical results show that the modes of collapse of the multi-cell corrugated tubes can be classified into four types: unstable, diamond, ring, and mixed modes. Each mode is strongly affected by the number of cosine wave crests and their amplitude. By analyzing the force-displacement performance and crashworthiness indicators, it was found that tubes with appropriate number of wave crests and amplitudes, and inner rib shape experience lower initial peak forces and increase energy absorption and specific energy absorption (compared with a traditional straight tube with the same inner rib). The undulation in the load-carrying capacity is also decreased. Thus, the multi-cell corrugated tubes have good crashworthiness.
机译:本文提出了一种生物启发的多单元波纹管,用于能量吸收。所提出的结构包括两部分:内肋和将内肋插入其中的波纹管。波纹管的结构是基于两个参数,即余弦波峰的数量及其幅度,使用余弦表达式指定的。设计了两个不同截面的内肋(X形和Y形),并分析了所得管的耐撞性。耐撞性是使用有限元程序LS-DYNA确定的。数值结果表明,多单元波纹管的塌陷模式可以分为四种:不稳定模式,菱形模式,环形模式和混合模式。每种模式都会受到余弦波峰的数量及其幅度的强烈影响。通过分析力-位移性能和耐撞性指标,发现具有适当波峰和振幅数量且内肋形状的管子承受的初始峰值力较低,并增加了能量吸收和比能吸收(与传统的直管相比)相同的内肋)。承载能力的波动也减少了。因此,多室波纹管具有良好的耐撞性。

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