Hysteretic performance of all-steel assembled double-cores buckling-restrained braces using Q195 low-yield core

2021 ◽  
Vol 187 ◽  
pp. 106925
Author(s):  
Fenghua Huang ◽  
Haijuan Duan ◽  
Bin Cheng ◽  
Nianguan Teng
2010 ◽  
Vol 163-167 ◽  
pp. 681-685 ◽  
Author(s):  
Zhan Zhong Yin ◽  
Xiu Li Wang

Double-tube buckling restrained braces with contact ring is a new buckling-restrained brace (BRBs), and is a refinement of double-tube buckling restrained braces. Based on the theory of the finite element method, the finite element entity model of double-tube buckling restrained brace with contact-ring has been made. The double-tube buckling restrained braces is systematically analyzed and computed. The analysis results indicate that this kind of buckling restrained brace has good energy dissipation and restoring force characteristics, and can overcome the difficulty in connection.


2019 ◽  
Vol 17 (6) ◽  
pp. 3255-3281 ◽  
Author(s):  
Huihui Dong ◽  
Xiuli Du ◽  
Qiang Han ◽  
Kaiming Bi ◽  
Hong Hao

2018 ◽  
Vol 763 ◽  
pp. 867-874
Author(s):  
Yu Shu Liu ◽  
Ke Peng Chen ◽  
Guo Qiang Li ◽  
Fei Fei Sun

Buckling Restrained Braces (BRBs) are effective energy dissipation devices. The key advantages of BRB are its comparable tensile and compressive behavior and stable energy dissipation capacity. In this paper, low-cycle fatigue performance of domestic BRBs is obtained based on collected experimental data under constant and variable amplitude loadings. The results show that the relationship between fatigue life and strain amplitude satisfies the Mason-Coffin equation. By adopting theory of structural reliability, this paper presents several allowable fatigue life curves with different confidential levels. Besides, Palmgren-Miner method was used for calculating BRB cumulative damages. An allowable damage factor with 95% confidential level is put forward for assessing damage under variable amplitude fatigue. In addition, this paper presents an empirical criterion with rain flow algorithm, which may be used to predict the fracture of BRBs under severe earthquakes and provide theory and method for their engineering application. Finally, the conclusions of the paper were vilified through precise yet conservative prediction of the fatigue failure of BRB.


2021 ◽  
Vol 239 ◽  
pp. 112338
Author(s):  
Wenchen Dong ◽  
Minghao Li ◽  
Chin-Long Lee ◽  
Gregory MacRae

2013 ◽  
Vol 78 (691) ◽  
pp. 1613-1620
Author(s):  
Ryunosuke ITO ◽  
Tadao NAKAGOMI ◽  
Masatoshi MURAI ◽  
Mamoru IWATA ◽  
Ryota WAKAI

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