Experimental investigation of hybrid buckling-restrained braces

被引:1
作者
Do-Hyun Kim
Chang-Hwan Lee
Young K. Ju
机构
[1] Gyeonggi College of Science and Technology,Department of Architecture and Interior Design
[2] DongYang Structural Engineers Co.,Research Institute of Structural Engineering & System
[3] Ltd.,School of Civil, Environmental and Architectural Engineering
[4] Korea University,undefined
来源
International Journal of Steel Structures | 2017年 / 17卷
关键词
hybrid damper; buckling-restrained brace (BRB); cyclic loading; damping ratio; energy dissipation;
D O I
暂无
中图分类号
学科分类号
摘要
Though a buckling-restrained brace (BRB) has good seismic performance, it cannot dissipate energy under wind loads or weak earthquakes because its core does not yield. A hybrid buckling-restrained brace (H-BRB), which is a type of hybrid damping system consisting of a BRB member and a viscoelastic damper, has been proposed to improve the wind-resisting performance of the standard BRB. In order to evaluate the wind and seismic performance of the H-BRB system, two H-BRB specimens and one BRB specimen were tested in this study. The variable for the wind performance test was the shear action mechanism of the viscoelastic damper with and without a side connection plate, and the variable for the seismic performance test was whether a separation occurred between the steel tube and a stopper after the yielding of the steel core. The wind performance test showed that H-BRB’s mechanism could be realized only when the viscoelastic damper operated with double shear action. Also, the seismic performance test demonstrated that H-BRB could satisfy the required performance when the tube and stopper were separated after the core’s yielding.
引用
收藏
页码:245 / 255
页数:10
相关论文
共 43 条
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