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Experimental study on the cyclic behavior of integrated panels for cold-formed steel shear wall systemoa mark
  • Lee, Doo Yong ;
  • Cho, Bong Ho ;
  • Jung, Dam I. ;
  • Lee, Jae Sub ;
  • Lee, Keun Woo
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Publication Year
2020-03-01
Publisher
MDPI AG
Citation
Applied Sciences (Switzerland), Vol.10
Keyword
cold-formed steel shear wall systemcyclic testsintegrated panellight gauge steel framesteel panelstructural performance
All Science Classification Codes (ASJC)
Materials Science (all)InstrumentationEngineering (all)Process Chemistry and TechnologyComputer Science ApplicationsFluid Flow and Transfer Processes
Abstract
Studies on the constructability of cold-formed steel (CFS) members are lacking. In this context, this paper proposes an integrated panel to replace the studs and steel sheet in the steel-sheathed wall system used in light gauge steel frames. The integrated panel was developed, to not only exhibit better structural performance and constructability than the steel-sheathed wall system, but to also reflect the appropriate details for applications to on-site panel construction. Cyclic loading tests were performed to investigate the seismic performances of three integrated panel specimens and a steel-sheathed panel specimen. The integrated panel specimens exhibited greater deformation capacity, ductility and equivalent damping ratio than the steel-sheathed panel. Although the web slenderness of the integrated member was nearly 400, the nominal strength of the integrated panel was predictable on an AISI standard. However, for stud-reinforced integrated panels, the nominal strength was overestimated by 45%-60%, and a draft equation was proposed to predict the yield strength of these panels. The proposed equation accurately predicted the yield strength of the stud-reinforced integrated panel specimens. The study results can aid in the construction of light gauge steel frames that require reinforcing parts with a high web slenderness ratio.
ISSN
2076-3417
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/31227
DOI
https://doi.org/10.3390/app10051649
Fulltext

Type
Article
Funding
This research was funded by the National Research Foundation of Korea, grant number NRF-2016 R1D1A1B01010615.
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CHO, BONG HO조봉호
Department of Architecture
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