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Behavior of eccentrically loaded double circular steel tubular short columns filled with concrete

机译:偏心受压混凝土双圆钢管短柱的性能。

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Circular concrete-filled double steel tubular (CFDST) columns in high-rise building structures possess high ductility and strength performance owing to the concrete confinement exerted by the external and internal circular steel tubes. However, the behavior of circular CFDST short columns that are loaded eccentrically has not been investigated either experimentally or numerically. Particularly, numerical studies on the moment-curvature responses, strength envelopes, confinement effects and moment distributions in circular CFDST beam-columns have not been reported. In this paper, experimental and computational investigations into the structural responses of circular CFDST short columns loaded eccentrically are presented. Nineteen short circular CFDST columns with various parameters under axial and eccentric loads were tested to failure to measure their structural responses. Test results are presented and discussed. A mathematical simulation model underlying the method of fiber analysis is proposed that simulates the axial load-moment-curvature relationships as well as the strength interaction curves of CFDST beam-columns composed of circular sections. The mathematical modeling technique explicitly takes into account the confinement of concrete on the responses of CFDST columns. The computational procedure and solution method are given. The accuracy of the computer simulation model is evaluated by comparing computations against experimental data. The significance of material and geometric properties, concrete confinement and axial load ratio on the responses of moment-curvature and strength envelopes of CFDST columns and the moment distributions in concrete and steel components are investigated. The mathematical model proposed not only simulates well the experimentally observed responses of CFDST columns but also can monitor the moment distributions in the steel and concrete components of such composite columns.
机译:高层建筑结构中的圆形钢管混凝土双柱(CFDST)柱由于受内部和外部圆形钢管的约束而具有高延展性和强度性能。但是,尚未通过实验或数值研究偏心加载的圆形CFDST短柱的行为。特别是,还没有关于圆形CFDST梁柱中弯矩-曲率响应,强度包络,约束效应和弯矩分布的数值研究的报道。本文对偏心加载的圆形CFDST短柱的结构响应进行了实验和计算研究。测试了十九个短圆形CFDST圆柱,它们在轴向和偏心载荷下具有各种参数,无法测量其结构响应。介绍并讨论了测试结果。提出了一种基于纤维分析方法的数学模拟模型,该模型模拟了由圆形截面组成的CFDST梁柱的轴向载荷-弯矩-曲率关系以及强度相互作用曲线。数学建模技术明确考虑了混凝土对CFDST柱响应的限制。给出了计算过程和求解方法。通过将计算与实验数据进行比较,可以评估计算机仿真模型的准确性。研究了材料和几何特性,混凝土约束和轴向载荷比对CFDST柱弯矩-曲率和强度包络以及混凝土和钢构件弯矩分布的意义。提出的数学模型不仅可以很好地模拟CFDST柱在实验中观察到的响应,而且可以监视此类复合柱在钢和混凝土构件中的弯矩分布。

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