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Crashworthiness analysis of bio-inspired fractal tree-like multi-cell circular tubes under axial crushing

机译:轴压下的生物启发分形树状多细胞圆管的耐火性分析

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This study proposes novel bio-inspired fractal multi-cell circular (BFMC) tubes for energy absorption. The inner structures of the proposed BFMC tubes were constructed based on the fractal tree-like forms found in many biological structures such as giant water lily and dragon blood tree. The crashworthiness performances of the proposed structures with different fractal orders and mass were numerically investigated. The numerical results indicated that the specific energy absorption (SEA) increased with the fractal order and the SEA of the 2nd order BFMC tube was 35.43% higher than that of the conventional multi-cell circular tube. Furthermore, the complex proportional assessment (COPRAS) method was adopted to optimize the performance of the BFMC. The results demonstrated that the proposed structure with four number of tree-like branches and 2nd-order fractal provided the best performance. Finally, a theoretical derivation of the mean crushing force (MCF) was developed for the proposed tubes based on the simplified super folding element theory. The theoretical results of MCF agreed well with the numerical results. The findings of this study provide an effective guide for using the biomimetic approach with the fractal tree-like forms for the design of a multi-cell energy absorber with high energy absorption efficiency.
机译:本研究提出了新的生物启发分形多细胞圆形(BFMC)管,用于能量吸收。所提出的BFMC管的内部结构是基于在许多生物结构中发现的分形树状形式构建的,例如巨水百合和龙血树。在数值上研究了具有不同分形令和质量的提出结构的耐火性性能。数值结果表明,特定的能量吸收(海)随着分形阶的增加,第二阶BFMC管的海洋高于传统多细胞圆管的35.43%。此外,采用复杂的比例评估(COPRAS)方法来优化BFMC的性能。结果表明,所提出的结构具有四个树状的树枝和2nd阶分形提供了最佳性能。最后,基于简化的超折叠元素理论,为所提出的管开发了平均破碎力(MCF)的理论衍生。 MCF的理论结果与数值效果很好。该研究的结果提供了一种有效的指导,用于使用具有高能量吸收效率的多电池能量吸收器的分形树状形式的分形树形形式。

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