4.6 Article

Crushing Behaviors and Energy Absorption Evaluation Methods of Hexagonal Steel Tubular Columns with Triangular Cells

期刊

MATERIALS
卷 15, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/ma15113910

关键词

hexagonal multi-cell tube; mean crushing force; energy absorption

资金

  1. Key Scientific Research Project of Henan Province [22B560013]

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Under axial compression, multi-cell tubes are more effective than single-cell tubes. Regular hexagonal multi-cell tubes (HMT) are found to have higher energy absorption efficiency compared with conventional thin-walled tubes. Increasing the number of triangular cells can further improve the mean crushing force and specific energy absorption of the multi-cell tubes.
Under axial compression, multi-cell tubes are considered more effective than single-cell tubes. Regular hexagonal multi-cell tubes (HMT) were designed, tested, and analyzed by finite element modeling (FEM). The crushing mechanism of the HMT was revealed by compression testing and FEM. Experiments and FEM revealed that the mean crushing force of the HMT can be increased by 14% by adopting multi-cell topology, which shortens the folding wavelength and enables HMT progressive crushing. Thus, the HMT is more efficient in energy absorption compared with the conventional regular hexagonal thin-walled tube (HST). More triangular cells result in HMTs with much greater mean crushing force and specific energy absorption. Three evaluation methods were proposed and discussed to determine the effective crushing distance. A plastic model established according to classical simplified super-folding elements was shown to consistently predict the mean crushing force of the HMTs.

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