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Passive Control Reinforced Concrete Frame Mechanism with High Strength Reinforcements and Its Potential Benefits Against Earthquakes
作者姓名:Asad  Ullah  Qazi  叶列平  陆新征
作者单位:Key Laboratory of Structural Engineering and Vibration of Ministry of Education Department of Civil Engineering,Tsinghua University,Key Laboratory of Structural Engineering and Vibration of Ministry of Education,Department of Civil Engineering,Tsinghua University,Key Laboratory of Structural Engineering and Vibration of Ministry of Education,Department of Civil Engineering,Tsinghua University,Beijing 100084,China,Beijing 100084,China,Beijing 100084,China
基金项目:Supported by the Specialized Research Fund for the Doctoral Program of Higher Education (No. 20040003095) and the Cul-tivation Fund of the Key Grant Scientific and Technical Innova-tion Project, Ministry of Education of China (No. 704003)
摘    要:Introduction In most reinforced concrete (RC) structures, a large stiffness is needed in order to limit structural deforma- tion for service load conditions. In seismic resistant structures, however, the energy dissipation demands are imposed and inelasti…

关 键 词:地震  被动控制  高强度钢筋  预应力混凝土框架  抗震能力  潜在效益
收稿时间:2005-08-12
修稿时间:2005-08-122005-09-28

Passive Control Reinforced Concrete Frame Mechanism with High Strength Reinforcements and Its Potential Benefits Against Earthquakes
Asad Ullah Qazi, Lieping Ye, &#x;,Xinzheng Lu, &#x; .Passive Control Reinforced Concrete Frame Mechanism with High Strength Reinforcements and Its Potential Benefits Against Earthquakes[J].Tsinghua Science and Technology,2006,11(6):640-647.
Authors:Asad Ullah Qazi  Lieping Ye  &#x;  Xinzheng Lu  &#x; 
Institution:Key Laboratory of Structural Engineering and Vibration of Ministry of Education, Department of Civil Engineering, Tsingbua University, Beijing 100084, China
Abstract:Severe earthquakes continue to cause major catastrophes. Many devices in active, hybrid, and semi-active structural control systems which are used as controllable force devices are costly to build and maintain. The passive control reinforced concrete frame (PCRCF) reinforced with high strength steel only in the columns presented here provides structural systems more resistance to lateral earthquake loadings at comparatively lower cost. The effectiveness is demonstrated by a nonlinear static analysis using fiber model for a single story single bay frame. The study shows that the use of high performance steel in columns pre- vents formation of plastic hinges at the critical column base sections and failures are always initiated by reinforcement yielding at the beam ends. Furthermore, after experiencing severe lateral drift, the passive control design has small residual displacements compared to ordinary reinforced concrete frames. PCRCF rehabilitation and strengthening can be achieved more easily as compared with ordinary reinforced concrete frame.
Keywords:earthquake  passive control  high strength reinforcement  failure mechanism  residual displacement
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