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Improving the behavior of buckling restrained braces through obtaining optimum steel core length

Mirtaheri, M ; Sharif University of Technology | 2018

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  1. Type of Document: Article
  2. DOI: 10.12989/sem.2018.65.4.401
  3. Publisher: Techno Press , 2018
  4. Abstract:
  5. Concentric braced frames are commonly used in steel structures to withstand lateral forces. One of the drawbacks of these systems is the possibility that the braces are buckled under compressive loads, which leads to sudden reduction of the bearing capacity of the structure. To overcome this deficiency, the idea of the Buckling Restrained Brace (BRB) has been proposed in recent years. The length of a BRB steel core can have a significant effect on its overall behavior, since it directly influences the energy dissipation capability of the member. In this study, numerical methods have been utilized for investigation of the optimum length of BRB steel cores. For this purpose, BRBs with different lengths placed into several two-dimensional framing systems with various heights were considered. Then, the Response History Analysis (RHA) was performed, and finally, the optimum steel core length of BRBs and its effect on the responses of the overall system were investigated. The results show that the shortest length where failure does not occur is the best length that can be proposed as the optimum steel core length of BRBs. This length can be obtained through a formula which has been derived and verified in this study by both analytical and numerical methods. © 2018 Techno-Press, Ltd
  6. Keywords:
  7. Failure ; Seismic loads ; Computer system recovery ; Energy dissipation ; Numerical methods ; Analytical and numerical methods ; Buckling restrained braces ; Compressive loads ; Energy dissipation capability ; Optimum length ; Response history analysis (RHA) ; Seismic load ; Steel core ; Buckling
  8. Source: Structural Engineering and Mechanics ; Volume 65, Issue 4 , February , 2018 , Pages 401-408 ; 12254568 (ISSN)
  9. URL: http://koreascience.or.kr/article/JAKO201810038013042.page