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Numerical study on racking behavior of light steel frames with K-shaped bracing

Kazemi, M. J ; Sharif University of Technology | 2019

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  1. Type of Document: Article
  2. DOI: 10.1108/WJE-12-2017-0407
  3. Publisher: Emerald Group Publishing Ltd , 2019
  4. Abstract:
  5. Purpose: This paper aims to study the lateral behavior of cold-formed steel walls with K-shaped bracing by finite element modeling. Design/methodology/approach: The braces which have the same section as those for studs and tracks are connected to the frame by screw connections. By pushover analysis, lateral performance of two frame categories, with different dimensions and bracing arrangements, is examined, and the force-displacement diagram and the ultimate strength of walls are extracted. Probable failure modes during lateral loading including distortional buckling of studs, buckling in braces and failure of connections are simulated in the numerical model, and some strengthening suggestions would be offered to prevent brittle failures and, therefore, to increase the lateral strength of the walls. Findings: The strengthened walls are examined, and their seismic behavior is compared with the original walls. Finally, a parametric study is carried out to evaluate the effect of factors such as thickness of frame members, frame height and yield tension of members on lateral behavior of the shear walls. Originality/value: In the present research, lateral strength and failure modes of nine types of cold-formed steel shear walls with different arrangements of K-shaped bracing are examined by non-linear finite element analysis, and a parametric study is carried out to extract the effect of the wall frame characteristics on the lateral behavior. Shear walls are classified into two series. © 2019, Emerald Publishing Limited
  6. Keywords:
  7. Cold-formed steel ; Finite element method ; K-shaped brace ; Light steel frame ; Nonlinear analysis ; Push over ; Shear wall ; Strengthening
  8. Source: World Journal of Engineering ; Volume 16, Issue 2 , 2019 , Pages 238-247 ; 17085284 (ISSN)
  9. URL: https://www-emerald-com.ezp2.semantak.com/insight/content/doi/10.1108/WJE-12-2017-0407/full/html