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Evaluation of crushing and energy absorption characteristics of bio-inspired nested structures

机译:生物启发式嵌套结构的破碎和能量吸收特性评估

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摘要

Mimicking anatomical structures like bone can aid in the development of energy absorbing structures that can achieve desirable properties. Accordingly, this study presents the analysis of tubular nested designs inspired by Haversian bone architecture. Based on this design philosophy, a total of 18 nested tube designs with various geometrical configurations were developed. Within each design, the effect of reinforcement walls on the crashworthiness performance is also analysed. A finite element model, validated using quasi-static experimental tests, was used to study the crashworthiness performance and progressive deformation of the nested system. Based on the results, a multi-criteria decision-making method known as Technique of Order Preference by Similarity to Ideal Solution (TOPSIS) was employed to determine the most suitable cross-section that features high energy absorption and low impact force. Consequently, the study identified a nested tube configuration that exhibits superior crashworthiness and high energy absorbing characteristics. The bio-inspired design methodology presented in this study allows the exploitation of variable nested geometries for the development of high-efficiency energy absorbing structures.
机译:模仿骨骼等解剖结构可以帮助开发可以实现所需特性的能量吸收结构。因此,本研究对受哈弗斯骨结构启发的管状嵌套设计进行了分析。基于这种设计理念,总共开发了18种具有各种几何形状的嵌套管设计。在每个设计中,还分析了加固墙对耐撞性能的影响。使用准静态实验测试验证的有限元模型用于研究嵌套系统的耐撞性和渐进变形。根据结果​​,采用了一种多准则决策方法,即“与理想解决方案相似的优先顺序技术”(TOPSIS),以确定具有高能量吸收和低冲击力的最合适横截面。因此,研究确定了嵌套管结构,该结构具有出色的耐撞性和高能量吸收特性。本研究中提出的受生物启发的设计方法可以利用可变的嵌套几何形状开发高效的能量吸收结构。

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