Local buckling behavior of core plate in all-steel buckling restrained braces

被引:0
作者
Nader Hoveidae
behzad Rafezy
机构
[1] Azarbaijan Shahid Madani University,Engineering Faculty, Civil Engineering Department
[2] Sahand University of Technology,Faculty of Civil Engineering
[3] Sahand,undefined
[4] Tabriz,undefined
来源
International Journal of Steel Structures | 2015年 / 15卷
关键词
all-steel buckling restrained brace; interface detail; local buckling behavior; finite element analysis; cyclic loading;
D O I
暂无
中图分类号
学科分类号
摘要
This study presents the finite element analysis results of the proposed all-steel buckling restrained brace (BRB) models. The objective of the analysis is to conduct a parametric study to investigate the effect of interface detail of BRBs on local buckling behavior of the core plate. Moreover, the effects of magnitude of friction coefficient (¦Ì) between the core and the buckling restraining mechanism (BRM) contact, the size of gap between the core and the BRM, and the unbonding material thickness on local buckling behavior of core plate in BRBs are investigated through the finite element analysis method. Based on the results, the interface configuration, the magnitude of friction coefficient at the interface, and the size of gap could significantly affect the local buckling behavior of core plate in all-steel BRBs. However, the thickness change in unbonding material was not found to considerably affect the overall response of BRBs. Finally, an appropriate interface detail in BRBs was suggested for design purposes based on the finite element analyses results.
引用
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页码:249 / 260
页数:11
相关论文
共 29 条
[1]  
Chou C.(2010)Sub-assemblage tests and finite element analyses of sandwiched buckling restrained braces Engineering Structures 32 2108-2121
[2]  
Chen S.(2010)An experimental study on steel-encased buckling restrained brace hysteretic damper Journal of Earthquake Engineering and Structural Dynamics 39 561-581
[3]  
Eryasar M.(2007)Seismic response and performance of bucklingrestrained braced frames Journal of the Structural Engineering 133 1195-1204
[4]  
Topkaya C.(2001)Stiffening requirements for unbonded braces encased in concrete panels Journal of Structural Engineering 127 712-719
[5]  
Fahnestock L. A.(2000)State of the art of buckling-restrained braces in Asia Fatigue properties of practical-scale unbounded braces 82 51-57
[6]  
Sause R.(2005)Seismic demands on steel braced frame buildings with bucklingrestrained braces Journal of Constructional Steel Research 61 727-748
[7]  
Ricles J. M.(2003)Seismic testing and performance of buckling restrained bracing systems Journal of Engineering Structures 5 655-666
[8]  
Inoue K.(2006)Experimental study on cyclic elasto-plastic behavior of buckling-restraining braces Canadian Journal of Civil Engineering 33 183-198
[9]  
Sawaizumi S.(2003)undefined JSCE J. Earthquake Engineering 27 133-undefined
[10]  
Higashibata Y.(undefined)undefined undefined undefined undefined-undefined