首页> 外文会议>Thomas T.C. Hsu symposium: Shear and torsion in concrete structures : At the ACI fall 2009 convention >Reversed Cyclic Behavior of Reinforced Concrete Shear Walls with Diagonal Steel Grids
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Reversed Cyclic Behavior of Reinforced Concrete Shear Walls with Diagonal Steel Grids

机译:对角钢格架钢筋混凝土剪力墙的反循环性能

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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.
机译:过去在休斯顿大学进行的钢筋混凝土面板测试表明,当钢筋沿主拉伸应力方向提供时,钢筋混凝土膜单元在反向循环荷载作用下具有更大的延展性和能量耗散。本文介绍了在循环荷载作用下两个低层剪力墙和两个中层剪力墙的试验结果。低层剪力墙的高宽比为0.5,两个中层剪力墙的高宽比为1.5。在关键区域,壁增强件的设计方向应接近主应力方向。此外,使用最近在休斯敦大学开发的有限元分析程序模拟钢筋混凝土结构(SRCS)对被测墙进行了非线性有限元分析。通过将循环软化膜模型(CSMM)应用于有限元框架OpenSees,开发了SRCS。比较表明,在初始刚度,极限强度,磁滞回线和能量耗散方面,四种剪力墙的预测结果与实验结果之间具有良好的相关性,并且SRCS评估具有斜钢格架的剪力墙的循环行为的能力为已验证。

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