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Seismic performance of composite coupling beams with diagonal steel tubes

机译:对角钢管组合耦合梁的抗震性能

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Reinforced-concrete (RC) coupled shear walls are an efficient earthquake-resistant system governed by the performance, especially ductility, of coupling beams connecting two or more RC walls. To enhance the performance of RC coupled walls, the coupling beams need very complicated details such as diagonal reinforcements. This paper provides the experimental results for rectangular steel tube reinforced composite coupling beams, which were tested to investigate the feasibility of introducing rectangular steel tubes as an alternative to diagonal bar groups confined by transverse reinforcement to improve constructability and save construction time. Three coupling beams with a span-depth ratio of 2.0 and specified compressive strength of 80 MPa were tested under cyclic loading. Test results showed that 80 MPa concrete and a non-shrink mortar-filled steel tube composite coupling beam exhibited stable behaviour up to a chord rotation of 3.5%. The non-shrink mortar-filled steel tubes replacing diagonal bar bundles improved the initial stiffness and energy dissipation capacity of composite coupling beams compared to the empty steel tubes. It is concluded that non-shrink mortar-filled steel tubes are a feasible option to replace diagonal bar groups confined by closely spaced hoops.
机译:钢筋混凝土(RC)耦合剪力墙是一种有效的抗震系统,受连接两个或更多RC墙的耦合梁的性能(尤其是延展性)支配。为了增强RC耦合墙的性能,耦合梁需要非常复杂的细节,例如对角线钢筋。本文提供了矩形钢管增强复合材料耦合梁的试验结果,进行了测试,以研究引入矩形钢管替代横向钢筋约束的对角钢筋组的可行性,以提高可施工性并节省施工时间。在循环载荷下测试了三个跨接梁,它们的跨深比为2.0,规定的抗压强度为80 MPa。测试结果表明,80 MPa的混凝土和非收缩砂浆填充钢管复合耦合梁在弦旋转3.5%时表现出稳定的性能。与空钢管相比,用非收缩砂浆填充的钢管代替了对角钢筋束,提高了复合连接梁的初始刚度和能量耗散能力。结论是,不收缩的砂浆填充钢管是一种替代可行的选择,它可以替代由间隔较近的箍限制的对角钢筋组。

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