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单箱双室耗能支撑钢框架的抗震性能分析
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作者 周鹏 范存新 《工程抗震与加固改造》 北大核心 2019年第6期31-40,49,共11页
针对既有钢框架结构存在承载力、抗震性能不足等问题,设计了双钢管混凝土缀板耗能支撑和单箱双室耗能支撑,利用ABAQUS软件在同样的位移荷载下计算出来的滞回耗能曲线,证明单箱双室耗能支撑,不仅能简化施工工序,还能具有比双钢管混凝土... 针对既有钢框架结构存在承载力、抗震性能不足等问题,设计了双钢管混凝土缀板耗能支撑和单箱双室耗能支撑,利用ABAQUS软件在同样的位移荷载下计算出来的滞回耗能曲线,证明单箱双室耗能支撑,不仅能简化施工工序,还能具有比双钢管混凝土缀板耗能支撑优越的耗能能力。在此基础上采用SAP2000软件分别建立普通中心支撑框架和单箱双室耗能支撑框架两种结构模型,对其在地震响应中的基底剪力、位移、加速度、支撑轴力和支撑滞回曲线进行对比分析。研究表明:单箱双室耗能支撑对钢框架的耗能减震效果显著。 展开更多
关键词 双钢管混凝土缀板支撑 单箱双室耗能支撑 滞回耗能曲线 钢框架 地震响应
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Seismic performance of double- skin steel- concrete composite box piers: Part Ⅰ——Bidirectional quasi-static testing 被引量:6
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作者 夏坚 宗周红 +1 位作者 徐焯然 李明鸿 《Journal of Southeast University(English Edition)》 EI CAS 2016年第1期58-66,共9页
To study the seismic performance of double-skin steelconcrete composite box( DSCB) piers, a total of 11 DSCB pier specimens were tested under bidirectional cyclic loading. The effects of the loading pattern, the ste... To study the seismic performance of double-skin steelconcrete composite box( DSCB) piers, a total of 11 DSCB pier specimens were tested under bidirectional cyclic loading. The effects of the loading pattern, the steel plate thickness, the axial load ratio, the slenderness ratio and the aspect ratio were taken into consideration. The damage evolution process and failure modes of the tested specimens are presented in detail. Test results are also discussed in terms of the hysteretic curve, skeleton curve, ductility and energy dissipation capacity of DSCB pier specimens. It can be concluded that the hysteretic performance of DSCB piers in one direction is affected and weakened by the cyclic loading in the other direction. DSCB piers under bidirectional cyclic loading exhibit good performance in terms of load carrying capacity, ductility, and energy dissipation capacity. Overall, DSCB piers can meet the basic aseismic requirements. The research results can be taken as a reference for using DSCB piers as high piers in bridges in strong earthquakeprone areas. 展开更多
关键词 double-skin steel-concrete composite box(DSCB) pier bidirectional quasi-static testing hysteretic curve skeleton curve ductility energy dissipation capacity
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Seismic behaviors of steel reinforced ECC/RC composite columns under low-cyclic loading 被引量:8
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作者 Pan Jinlong Mo Chuang +1 位作者 Xu Li Chen Junhan 《Journal of Southeast University(English Edition)》 EI CAS 2017年第1期70-78,共9页
To improve the seismic performance of columns, engineered cementitious composite (ECC) is introduced to partially substitute concrete at the base of the columns to form ECC,/reinforced concrete ( RC) composite col... To improve the seismic performance of columns, engineered cementitious composite (ECC) is introduced to partially substitute concrete at the base of the columns to form ECC,/reinforced concrete ( RC) composite columns. The mechanical behaviors of the ECC/RC composite columns are numerically studied under low-cyclic loading with the finite element analysis softwareof MSC. MARC. It is found that the ECC/RC composite columns can significantly enhance the load capacity, the ductility ad energy dissipation of columns. Then, the effects of the height of the ECC, the axial compression ratio and the longitudinal reinforcement ratio on the seismic behaviors of the composite columns are parametrically studied. The results show that the ECC/RC composite column with a height of the ECC layer of 0. Sh(h is the height to the cross-section) can achieve similar seismic performance of a full ECC column. The peak load of the composite column increases significantly while the ductility decreases with the increase of the axial compression ratio. Increasing the longitudinal reinforcement ratio within a certain range can improve the ductility and energy dissipation capacity and almost has no effect on load capacity. The aalysis results ae instructive and valuable for reference in designing ECC structures. 展开更多
关键词 engineered cementitious composites ECC) ECC/RC composite columns hysteretic curves DUCTILITY energy dissipation parametric analysis
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