Cyclic testing of braces laterally restrained by steel Studs

Oguz C. Celik*, Jeffrey W. Berman, Michel Bruneau

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

21 Citations (Scopus)

Abstract

This paper experimentally investigates the cyclic inelastic performance of concentrically braced frames with and without cold formed steel stud (CFSS) infills designed to laterally restrain braces and delay their buckling. Specimens have either diagonal tube or solid bar braces with and without CFSS and U brackets providing out-of-plane and in-plane buckling restraint. Behavioral characteristics of the specimens are quantified with an emphasis on hysteretic energy dissipation. Experimental results show that, at the same ductility levels, the cumulative energy dissipation of braced frames can be significantly increased when CFSS members are used to laterally restrain the braces against buckling. However, when tubular cross sections are used for braces, local buckling led to a reduced fracture life compared to the case without CFSS members. CFSS members appear to be relatively more effective when solid bar braces having large slenderness (tension-only braces) are used, since the difference between dissipated energies obtained with and without studs is substantial.

Original languageEnglish
Pages (from-to)1114-1124
Number of pages11
JournalJournal of Structural Engineering
Volume131
Issue number7
DOIs
Publication statusPublished - Jul 2005

Keywords

  • Bracing
  • Cold-formed steel
  • Cyclic tests
  • Energy dissipation
  • Seismic response
  • Steel frames
  • Studs

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