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Nonlinear analysis of circular concrete-filled steel tubular short columns under eccentric loading

机译:圆形钢管混凝土短柱在偏心荷载作用下的非线性分析

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This paper presents an effective theoretical model for the nonlinear inelastic analysis of circular concrete-filled steel tubular (CFST) short columns under eccentric loading. Accurate material constitutive relationships for normal and high strength concrete confined by either normal or high strength circular steel tubes are incorporated in the theoretical model to account for confinement effects that increase both the strength and ductility of concrete. The predicted ultimate bending strengths and complete moment-curvature responses of circular CFST columns under eccentric loading are compared with existing experimental results to examine the accuracy of the theoretical model developed. The fundamental behavior of circular CFST beam-columns with various diameter-to-thickness ratios, concrete compressive strengths, steel yield strengths, axial load levels and sectional shapes is studied using the verified theoretical model. Based on extensive numerical studies, a new design model for determining the ultimate pure bending strengths of circular CFST beam-columns is proposed. The theoretical model and formulas developed are shown to be effective simulation and design tools for the nonlinear inelastic behavior of circular CFST beam-columns under eccentric loading.
机译:本文为偏心荷载下圆形钢管混凝土短柱的非线性非弹性分析提供了有效的理论模型。理论模型中包含了由普通钢管或高强度圆形钢管约束的普通和高强度混凝土的精确材料本构关系,以说明增加混凝土强度和延展性的约束效应。将圆形CFST圆柱在偏心荷载下的预测极限弯曲强度和完整弯矩曲率响应与现有实验结果进行比较,以检验所建立理论模型的准确性。使用验证的理论模型研究了各种直径/厚度比,混凝土抗压强度,钢屈服强度,轴向载荷水平和截面形状的圆形CFST梁柱的基本性能。基于大量的数值研究,提出了一种确定圆形CFST梁柱极限纯弯曲强度的新设计模型。所开发的理论模型和公式被证明是有效的模拟和设计工具,用于圆形CFST梁柱在偏心荷载下的非线性非弹性行为。

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