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Composite action of hexagonal concrete-filled steel tubular stub columns under axial loading

机译:六边形钢管混凝土短柱在轴向荷载作用下的复合作用。

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Four groups of axial compression tests on hexagonal CFT stub columns have been carried out aiming to investigate the effects of the concrete strength and steel ratio on the behaviour of hexagonal CFT stub columns. Studies on parametric analysis and composite action between core concrete and steel tube have been carried out using FE modelling which had been benchmarked using the test data. Based on the essential data obtained in this paper, the ratio of axial stress-yield strength of steel tube was determined at the ultimate state. The stress contour of core concrete was simplified to an unconfined area without constraint and a confined area with uniform constraint imposed by hexagonal steel tube. Eventually, a practical design equation of the ultimate bearing capacity of hexagonal CFT stub columns was proposed based on the superposition principle. An excellent agreement between the proposed equation and the experimental results was observed, with an average ratio of predicted to measured capacity of 1.08 and a standard deviation of 0.05. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了研究混凝土强度和钢比对六角形CFT短柱性能的影响,已经进行了四组轴向六角压缩试验。已经使用有限元建模对核心混凝土与钢管之间的参数分析和复合作用进行了研究,并已使用测试数据作为基准。根据本文获得的基本数据,确定了极限状态下钢管的轴向应力-屈服强度比。六角形钢管将核心混凝土的应力轮廓简化为无约束的无约束区域和具有均匀约束的约束区域。最终,基于叠加原理,提出了六角形CFT短管柱极限承载力的实用设计方程。观察到所提出的方程与实验结果之间的极佳一致性,预测容量与实测容量的平均比为1.08,标准偏差为0.05。 (C)2016 Elsevier Ltd.保留所有权利。

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