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首页> 外文期刊>Steel & Composite Structures: An International Journal >Experimental and analytical investigation of high-strength concrete-filled steel tube square columns subjected to flexural loading
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Experimental and analytical investigation of high-strength concrete-filled steel tube square columns subjected to flexural loading

机译:高强钢管混凝土方柱受弯试验与分析研究

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The concrete-filled steel tube (CFT) columns have several benefits of high load-bearing capacity, inherent ductility and toughness because of the confinement effect of the steel tube on concrete and the restraining effect of the concrete on local buckling of steel tube. However, the experimental research into the behavior of square CFT columns consisting of high-strength steel and high-strength concrete is limited. Six full scale CFT specimens were tested under flexural moment. The CFT columns consisted of high-strength steel tubes (f_y = 325 MPa, 555 MPa, 900 MPa) and high-strength concrete (f_(ck) = 80 MPa and 120 MPa). The ultimate capacity of high strength square CFT columns was compared with AISC-LRFD design code. Also, this study was focused on investigating the effect of high-strength materials on the structural behavior and the mathematical models of the steel tube and concrete. Nonlinear fiber element analyses were conducted based on the material model considering the cyclic bending behavior of high-strength CFT members. The results obtained from the numerical analyses were compared with the experimental results. It was found that the numerical analysis results agree well with the experimental results.
机译:由于钢管对混凝土的约束作用和混凝土对钢管局部屈曲的抑制作用,钢管混凝土(CFT)柱具有高承载能力,固有延展性和韧性等多个优点。但是,对由高强度钢和高强度混凝土组成的方形CFT柱性能的实验研究是有限的。在弯曲力矩下测试了六个全尺寸CFT标本。 CFT柱由高强度钢管(f_y = 325 MPa,555 MPa,900 MPa)和高强度混凝土(f_(ck)= 80 MPa和120 MPa)组成。将高强度方形CFT柱的极限容量与AISC-LRFD设计规范进行了比较。此外,本研究的重点还在于研究高强度材料对钢管和混凝土的结构行为和数学模型的影响。考虑到高强度CFT构件的周期性弯曲行为,基于材料模型进行了非线性纤维元素分析。从数值分析获得的结果与实验结果进行了比较。结果表明,数值分析结果与实验结果吻合良好。

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