超大吨位屈曲约束支撑在超限高层伸臂桁架中的应用研究

引用文献:

夏心红 袁涛 王四清 杨晓 彭爱萍 龚灵力 卜丹 巫振宏. 超大吨位屈曲约束支撑在超限高层伸臂桁架中的应用研究[J]. 建筑结构,2022,48(22):101-107.

XIA Xinhong YUAN Tao WANG Siqing YANG Xiao PENG Aiping GONG Lingli BU Dan WU Zhenhong. Application of buckling restrained brace with super large tonnage in over-code high-rise structure with cantilever truss[J]. Building Structure,2022,48(22):101-107.

作者:夏心红 袁涛 王四清 杨晓 彭爱萍 龚灵力 卜丹 巫振宏
单位:湖南省建筑设计院集团股份有限公司 中建研科技股份有限公司
摘要:屈曲约束支撑(BRB)在地震作用下可以率先吸收能量,提前进入屈服,在结构刚度不变的情况下,成为高耗能的结构构件。以一个超限高层项目为例,介绍了超大吨位BRB在伸臂桁架中的应用。开展了单根屈曲约束支撑1∶2缩尺模型的拟静力试验,并通过ABAQUS进行动力弹塑性分析。分析结果表明:BRB滞回曲线饱满、稳定和刚度增量为正,在罕遇地震作用下,其最大内力及变形均满足设计要求;同时与之相邻的竖向混凝土关键构件,在1.5倍控制荷载作用下,很少量混凝土发生损伤;与之相邻的钢结构构件,在1.35倍控制荷载作用下,仅部分框架梁腹板达到了屈服,而其他钢结构构件及节点均未屈服。
关键词:屈曲约束支撑;超大吨位;超限高层结构;伸臂桁架;动力弹塑性分析;节点有限元分析;
作者简介:夏心红,博士,正高级工程师,主要从事大跨复杂空间结构设计研究与设计管理工作,Email:452393091@qq.com。袁涛,博士,高级工程师,主要从事大跨复杂空间结构设计研究,Email:yuant@hnbim.com。
基金:国家自然科学基金项目(52278509)。
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Application of buckling restrained brace with super large tonnage in over-code high-rise structure with cantilever truss
XIA Xinhong YUAN Tao WANG Siqing YANG Xiao PENG Aiping GONG Lingli BU Dan WU Zhenhong
(Hunan Architectural Design Institute Group Co., Ltd. CABR Technology Co., Ltd.)
Abstract: Buckling restrained brace(BRB) can absorb energy first and yield ahead in advance under earthquake action, and become a structural member with high energy consumption when the structural stiffness remains unchanged. Taking an out of over-code high-rise project as an example, the application of super large tonnage BRB in cantilever truss was introduced. The pseudo static test of a 1∶2 scale model of a single buckling restrained brace was carried out, and the dynamic elastoplastic analysis was carried out by ABAQUS. The analysis results show that the BRB hysteretic curve is full and stable, the stiffness increment are positive, and the maximum internal force and deformation meet the design requirements under the action of rare earthquakes. At same time, the adjacent key vertical concrete members, under the action of 1.5 times of the control load, a small amount of concrete is damaged. The adjacent steel structure members, under 1.35 times of the control load, only part of the frame beam webs reached the yield, while other steel structure members and joints did not yield.
Keywords: buckling restrained brace; super large tonnage; over-code high-rise structure; dynamic elastoplastic analysis; node finite analysis
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