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Cyclic performance of frames with prestressed steel-concrete composite beams

机译:预应力钢混凝土组合梁框架的循环性能

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This paper presents a study of the cyclic performance of moment-resisting frames with prestressed steel-concrete composite beams subjected to cyclic displacement reversals. The failure patterns, failure mechanism, hysteretic model, ductility, energy dissipation capacity, stiffness degradation, and deformation-restoring capacity of two composite frames are discussed. Larger slip could be observed along the beam span of the frame with the common composite beam in comparison with the prestressed composite beam. A four-linear hysteretic model with descending branches and two pinching pivot points is proposed for the two composite frames. Tests show that both the test frames failed in a beam side-sway mechanism within the plane of the frame, and the frame with the prestressed composite beam develops relatively high deformation restoring capacity. The applied prestressing in the composite beam has a small contribution to cyclic behavior of the composite frame. Studies also show that more energy is dissipated by the frame with the prestressed composite beam than that with the common composite beam.
机译:本文研究了具有预应力钢-混凝土组合梁的抗弯框架在循环位移反作用下的循环性能。讨论了两个复合框架的破坏模式,破坏机理,滞后模型,延性,耗能能力,刚度退化和变形恢复能力。与预应力复合梁相比,沿着框架的梁跨与普通复合梁相比,可观察到更大的滑移。针对两个复合框架,提出了具有下降分支和两个收缩枢轴点的四线性滞后模型。测试表明,两个测试框架在框架平面内的横梁侧移机构中均失效,并且具有预应力复合梁的框架具有相对较高的变形恢复能力。在复合梁中施加的预应力对复合框架的循环行为贡献很小。研究还表明,与普通复合梁相比,预应力复合梁框架耗散的能量更多。

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