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Theoretical analysis and crashworthiness optimization of hybrid multi-cell structures

机译:混合多单元结构的理论分析与耐撞性优化

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Thin-walled structure is widely used in automobile, aviation and other industrial fields due to its lightweight, high energy absorption efficiency and low cost. Four thin-walled hybrid multi-cell structures with circular and square sections are proposed in this paper. The energy absorption characteristics and crushing deformation of the hybrid structures are investigated by experimental testing and numerical analysis. Meanwhile, the theoretical models of mean crushing force and specific energy absorption of the hybrid structures are developed by simplified super folding element (SSFE) theory. It is found from the sensitivity analysis of parameters that the dimension of the external tube (D) and the wall thickness (T) of the structure have significant effects on energy absorption. Furthermore, the multi-objective optimization including multiple surrogate models is performed to obtain optimal crashworthiness of the hybrid multi-cell structures. The results show that multiple surrogate models are more favorable and accurate for the crashworthiness design, and the hybrid multi-cell structure with the outer circle and inner square section (CS2) has the best crashworthiness performance. Finally, the multi-objective optimization solutions are analyzed and chosen by the normal boundary intersection (NBI) method to carry out the crashworthiness comparison with the typical multi-cell structures of the same mass, and the hybrid structure (CS2) outperforms multi-cell tubes with the single circular or square section.
机译:薄壁结构以其轻巧,能量吸收效率高,成本低等优点,被广泛应用于汽车,航空等工业领域。本文提出了四种具有圆形和正方形截面的薄壁混合多单元结构。通过实验测试和数值分析研究了混合结构的能量吸收特性和破碎变形。同时,利用简化的超折叠元件(SSFE)理论建立了混合结构平均破碎力和比能吸收的理论模型。从参数的敏感性分析中发现,外管的尺寸(D)和结构的壁厚(T)对能量吸收有显着影响。此外,执行包括多个代理模型的多目标优化,以获得混合多单元结构的最佳耐撞性。结果表明,多种替代模型对耐撞性设计更为有利和准确,外圆和内方截面(CS2)的混合多单元结构具有最佳的耐撞性。最后,通过法向边界交会(NBI)方法对多目标优化解决方案进行分析和选择,与相同质量的典型多单元结构进行耐撞性比较,混合结构(CS2)优于多单元具有单个圆形或正方形截面的管。

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