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Mechanical behavior of stirrup-confined rectangular CFT stub columns under axial compression

机译:箍筋约束矩形CFT短管柱在轴向压缩下的力学行为

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摘要

This paper mainly presents a combined experimental, numerical and theoretical study on the mechanical behaviors of both conventional concrete-filled rectangular steel tubular stub columns (RST) and stirrup-confined concrete-filled rectangular steel tubular stub columns (SST) under compressive load. 16 RST stub columns and 16 SST stub columns were tested, with consideration of parameters including internal stirrup, concrete strength, and cross-sectional aspect ratio B/D. The failure patterns, bearing capacity, stiffness and ductility of specimens were analyzed based on the experimental results. A 3D finite element (FE) model was established for numerical simulation and parametric study to investigate the composite action among the steel tube, stirrups and the core concrete. The improvement of energy dissipation capability due to the stirrups confinement on the core concrete is also discussed. In addition, a unified theoretical formula to predicted ultimate bearing capacity for SST stub columns and RST stub columns subjected to compressive load was developed according to the superposition principle with rational simplification. It is shown that the proposed formula for these columns has a higher accuracy compared with the existing formulas in current literatures and codes.
机译:本文主要对传统的矩形钢管混凝土短柱(RST)和箍筋约束矩形钢管短柱(SST)在压缩载荷下的力学性能进行了组合的实验,数值和理论研究。测试了16根RST短柱和16根SST短柱,并考虑了内部箍筋,混凝土强度和横截面纵横比B / D等参数。根据实验结果分析了试件的破坏模式,承载力,刚度和延性。建立了三维有限元(FE)模型用于数值模拟和参数研究,以研究钢管,箍筋和核心混凝土之间的复合作用。还讨论了由于箍筋限制在核心混凝土上而提高的能量消散能力。此外,根据叠加原理,在合理简化的基础上,建立了统一的理论公式来预测SST短管柱和RST短管柱的极限承载力。结果表明,与当前文献和编码中的现有公式相比,针对这些色谱柱提出的公式具有更高的准确性。

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