小半尖角锥形波纹管耐撞性数值研究及其影响机理。

IF 4.2 3区 医学 Q1 ENGINEERING, MULTIDISCIPLINARY Biomimetics Pub Date : 2025-01-06 DOI:10.3390/biomimetics10010029
Yiheng Song, Qinyu Lin, Jinxiang Chen, Tidong Zhao
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引用次数: 0

摘要

为了开发一种新型的仿生单细胞和多细胞吸能箱(管),必须解决目前锥形吸能管由于其大的半尖角而具有良好的耐撞性,对底部空间要求大的问题。本研究建议在半尖角较小的锥形管上增加波纹,并将底部的最后一两个倾斜波纹改为垂直波纹。有限元仿真结果表明,与传统锥形管相比,增加波纹使锥形管的最佳半尖角减小了5°,最佳范围为5 ~ 10°。此外,用垂直波纹代替倾斜波纹的修正方法有效地缓解了随着半顶角增加峰值破碎力增大和端峰破碎力较大的挑战。这一结构优化为开发新型锥形管仿生单细胞和多细胞吸能箱(管)奠定了基础。
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A Numerical Study on the Crashworthiness of Corrugated Conical Tubes with Small Semi-Apical Angles and Their Influence Mechanism.

To develop a new type of biomimetic single-cell and multi-cell energy-absorbing box (tube) featuring conical tubes at the intersection of cell walls, it is necessary to address the issue of large bottom-space requirements in current conical energy-absorbing tubes with superior crashworthiness due to their large semi-apical angles. This study proposes adding corrugations to conical tubes with small semi-apical angles and modifying the bottom by replacing the last one or two inclined corrugations with vertical ones. Finite element simulation results show that, compared to conventional conical tubes, adding corrugations reduces the optimal semi-apical angle of conical tubes by 5°, with the optimal range being 5-10°. Furthermore, the modification method of replacing inclined corrugations with vertical ones effectively mitigates the challenges of increasing peak crushing force and large end-peak crushing force as the semi-apical angle increases. This structural optimization lays a foundation for the development of new biomimetic single-cell and multi-cell energy-absorbing boxes (tubes) incorporating conical tubes.

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来源期刊
Biomimetics
Biomimetics Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
3.50
自引率
11.10%
发文量
189
审稿时长
11 weeks
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