Axial crush and bending collapse of an aluminum/GFRP hybrid square tube and its energy absorption capability

Kum Cheol Shin, Jung Ju Lee, Ku Hyun Kim, Min Cheol Song, Jeung Soo Huh

Research output: Contribution to journalArticlepeer-review

180 Scopus citations

Abstract

In this paper, energy absorption capability of axial crush and bending collapse of aluminum/GFRP hybrid tubes were investigated. Glass fiber-epoxy composite prepregs were wrapped around an aluminum tube and then cured completely in the autoclave under the recommended cure cycle. Bonding process between composite and aluminum tubes was performed by excess resin extracted from the composite tube during curing process. For comparing energy absorption characteristics of the hybrid tube with those of pure aluminum and composite tubes, tests were performed using specimens made of an aluminum alloy and a composite material, respectively. Failure mechanisms of the hybrid tube under the axial compressive load and the bending load were experimentally investigated. For calculating energy absorption capability of axial crush and bending collapse behaviors of the hybrid tube, the modified plastic hinge collapse model and the modified Kecman's model for hybrid tube were suggested, respectively. Two suggested models for the hybrid tube showed a good agreement with the experimental results.

Original languageEnglish
Pages (from-to)279-287
Number of pages9
JournalComposite Structures
Volume57
Issue number1-4
DOIs
StatePublished - Jul 2002

Keywords

  • Axial crush
  • Bending collapse
  • Energy absorption capability
  • Hybrid tube

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