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中高强度钢材钢框架梁柱组合节点抗震性能试验研究
石永久 ; 奥晓磊 ; 王元清 ; 施刚 ; Shi Yongjiu ; Ao Xiaolei ; Wang Yuanqing ; Shi Gang
2010-07-19 ; 2010-07-19
关键词中高强度钢材 梁柱组合节点 抗震性能 混凝土楼板 medium-high strength steel beam-to-column composite connection seismic performance concrete slab TU391 TU311.3
其他题名Experimental study on the seismic performance of beam-to-column composite connections in medium-high strength steel frame structures
中文摘要为了研究中高强度钢材的采用对钢框架梁柱组合节点抗震性能的影响,通过4个足尺钢框架梁柱组合节点试件在往复荷载作用下的破坏试验,获得了节点承载性能、滞回性能和破坏模式。试验从钢材强度、混凝土楼板配筋率、加载方式等影响因素出发,用承载力、极限转角、环线刚度、延性与耗能能力等指标评价节点的抗震性能。由试验结果可以看出:节点主要破坏模式为钢梁下翼缘局部屈曲和混凝土压溃;采用中高强度钢材可以有效地提高节点承载力,同时在一定程度上改善抗震性能和延性;楼板配筋率对中高强度钢材节点承载性能和延性耗能影响不大;正对称受力节点具有更好的极限承载力和环线刚度。; Four full-size specimens of composite connections are tested under cyclic loading, and the bearing capacity, cyclic performance and failure mode are derived from the experimental results to discuss the effect of the medium-high strength steel on the seismic performance of the composite connections. Taking into consideration of the steel strength, reinforcement ratio of the concrete slab and the loading mode, several indexes such as loading capacity, ultimate rotation, loop stiffness, ductility and energy dissipation are employed to evaluate the seismic performance. It can be concluded that the major failure mode of the connection is the local buckling of the lower beam flange and the crush of compressed concrete. The application of medium-high strength steel can effectively increase the loading capacity, and improve the seismic performance and ductility to a certain extent while the reinforcement ratio has little effect. Symmetric loading can evidently improve the ultimate strength and the loop stiffness of the connection in comparison with asymmetric loading.; 国家自然科学基金(90815004、50708051)
语种中文 ; 中文
内容类型期刊论文
源URL[http://hdl.handle.net/123456789/77009]  
专题清华大学
推荐引用方式
GB/T 7714
石永久,奥晓磊,王元清,等. 中高强度钢材钢框架梁柱组合节点抗震性能试验研究[J],2010, 2010.
APA 石永久.,奥晓磊.,王元清.,施刚.,Shi Yongjiu.,...&Shi Gang.(2010).中高强度钢材钢框架梁柱组合节点抗震性能试验研究..
MLA 石永久,et al."中高强度钢材钢框架梁柱组合节点抗震性能试验研究".(2010).
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