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双钢板-混凝土组合剪力墙研究新进展
引用本文:聂建国,陶慕轩,樊健生,卜凡民,胡红松,马晓伟,李盛勇,刘付钧. 双钢板-混凝土组合剪力墙研究新进展[J]. 建筑结构, 2011, 0(12)
作者姓名:聂建国  陶慕轩  樊健生  卜凡民  胡红松  马晓伟  李盛勇  刘付钧
作者单位:清华大学土木工程系土木工程安全与耐久教育部重点实验室;广州容柏生建筑结构设计事务所;
基金项目:国家自然科学基金资助项目(51178246); 清华大学自主科研计划资助项目(20101081766)
摘    要:进行了两组双钢板-混凝土组合剪力墙拟静力抗震性能试验,研究了该类结构的受力机理,并得到其典型破坏形态。试件均表现出良好的延性和耗能能力,滞回曲线饱满稳定,极限位移角均超过现行规范的规定限值,且大于其他类似试验的结果。缀板拉结措施可有效避免墙身钢板的局部屈曲,同时可加强对内填混凝土的约束作用,使高强混凝土在抗震剪力墙中的应用成为可能,从而很好地满足了超高层建筑结构对剪力墙高轴压、高延性、薄墙体的设计需求。在试验研究的基础上,开展了理论分析和数值模拟,对双钢板-混凝土组合剪力墙在工程中的应用提出了初步设计建议,对有待进一步开展的研究工作进行了展望。研究表明,双钢板-混凝土组合剪力墙具有延性好、耗能能力强、构造简单、施工方便、避免裂缝外露等优点,在超高层建筑结构中具有广阔的应用前景。

关 键 词:双钢板-混凝土组合剪力墙  抗震性能  拟静力试验  延性  超高层建筑  设计建议  

Research advances of composite shear walls with double steel plates and filled concrete
Nie Jianguo,Tao Muxuan,Fan Jiansheng,Bu Fanmin,Hu Hongsong,Ma Xiaowei,Li Shengyong,Liu Fujun. Research advances of composite shear walls with double steel plates and filled concrete[J]. Building Structure, 2011, 0(12)
Authors:Nie Jianguo  Tao Muxuan  Fan Jiansheng  Bu Fanmin  Hu Hongsong  Ma Xiaowei  Li Shengyong  Liu Fujun
Affiliation:Nie Jianguo1,Tao Muxuan1,Fan Jiansheng1,Bu Fanmin1,Hu Hongsong1,Ma Xiaowei1,Li Shengyong2,Liu Fujun2(1 Key Laboratory of Civil Engineering Safety and Durability of China Education Ministry,Department of Civil Engineering,Tsinghua University,Beijing 100084,China,2 RBS Architecture Engineer Design Associates,Guangzhou 510170,China)
Abstract:Quasi-static tests on seismic behavior of two groups of composite shear walls with double steel plates and filled concrete were conducted to investigate the structural mechanism and the typical failure modes.In the tests,all the specimens illustrated good ductility and energy dissipation ability with stable and full hysteretic curves.The ultimate drifts of all the specimens exceeded the limit value recommended by the current design code,and were also larger than the similar test results provided by other re...
Keywords:composite shear wall with double steel plates and filled concrete  seismic behavior  quasi-static test  ductility  super high-rise building  design recommendation  
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