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Reversed cyclic behavior of reinforced concrete shear walls with diagonal steel grids

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2 引文 斯高帕斯(Scopus)

摘要

Past reinforced concrete panel tests performed at the University of Houston have shown that reinforced concrete membrane elements under reversed cyclic loading have much greater ductility and energy dissipation when steel bars are provided in the direction of the principal tensile stress. This paper presents the experimental results of two low-rise and two mid-rise shear walls under reversed cyclic loading. The low-rise shear walls have a height-width ratio of 0.5, and the two mid-rise shear walls have a height-width ratio of 1.5. In critical regions, the wall reinforcements were designed in the orientation close to the principal stress direction. Furthermore, nonlinear finite element analyses of the tested walls were performed using the finite element analysis program Simulation of Reinforced Concrete Structures (SRCS), which was recently developed at the University of Houston. SRCS was developed by implementing the cyclic softened membrane model (CSMM) to the finite element framework OpenSees. The comparison showed good correlation between the predicted and experimental results of the four shear walls in terms of initial stiffness, ultimate strength, hysteretic loops, and energy dissipation, and the capability of SRCS to assess the cyclic behavior of shear walls with diagonal steel grids was validated.

原文English
主出版物標題Thomas T. C. Hsu Symposium
主出版物子標題Shear and Torsion in Concrete Structures - At the ACI Fall 2009 Convention
頁面47-72
頁數26
版本265 SP
出版狀態Published - 2009
事件ACI Fall 2009 Convention - New Orleans, LA, United States
持續時間: 8 11月 200912 11月 2009

出版系列

名字American Concrete Institute, ACI Special Publication
號碼265 SP
ISSN(列印)0193-2527

Conference

ConferenceACI Fall 2009 Convention
國家/地區United States
城市New Orleans, LA
期間8/11/0912/11/09

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