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Seismic behavior of steel reinforced concrete special-shaped column-beam joints

机译:钢筋混凝土异形梁节点的抗震性能

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This paper focuses on the study of seismic behavior of steel reinforced concrete special-shaped column-beam joints. Six specimens, which are designed according to the principle of strong-member and weak-joint core, are tested under low cyclic reversed load. Key parameters include the steel form in column section and the ratio of column limb height to thickness. The failure mode, load-displacement curves, ductility, stiffness degradations, energy dissipation capacity and shear deformation of joint core of the test subassemblies are analyzed. The results indicate that SRC special-shaped column-beam joints have good seismic behavior. All specimens failed due to the shear failure of the joint core, and the failure degree between the two sides of joint core is similar for the exterior joint but different for the corner joint. Compared to the joints with channel steel truss, the joints with solid web steel skeleton illustrate better ductility and energy dissipation capacity, but the loading capacity and stiffness are roughly close. With the increasing of the ratio of column limb height to thickness, the joints illustrate higher loading capacity and stiffness, better energy dissipation capacity, but worse ductility.
机译:本文主要研究钢筋混凝土异形柱-梁节点的抗震性能。在低周向反向载荷下,测试了根据强构件和弱接头核心原理设计的六个试样。关键参数包括柱截面中的钢形式和柱肢高度与厚度之比。分析了测试组件的接头芯的破坏模式,载荷-位移曲线,延性,刚度退化,能量耗散能力和剪切变形。结果表明,SRC异形柱梁节点具有良好的抗震性能。所有样品均由于关节核心的剪切破坏而失效,而外部核心的关节核心两侧的破坏程度相似,而角部关节则不同。与槽钢桁架的节点相比,实心腹板钢骨架的节点具有更好的延展性和能量耗散能力,但承载能力和刚度却基本接近。随着柱肢高度与厚度之比的增加,接头具有更高的承载能力和刚度,更好的能量耗散能力,但延展性更差。

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