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Axial Compression Performance of Square Thin Walled Concrete-Filled Steel Tube Stub Columns with Reinforcement Stiffener under Constant High-Temperature

机译:恒定高温下带加强筋的方形薄壁钢管混凝土短柱的轴向压缩性能

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摘要

This study investigated the axial compressive performance of six thin-walled concrete-filled steel tube (CFST) square column specimens with steel bar stiffeners and two non-stiffened specimens at constant temperatures of 20 °C, 100 °C, 200 °C, 400 °C, 600 °C and 800 °C. The mechanical properties of the specimens at different temperatures were analyzed in terms of the ultimate bearing capacity, failure mode, and load–displacement curve. The experiment results show that at high temperature, even though the mechanical properties of the specimens declined, leading to a decrease of the ultimate bearing capacity, the ductility and deformation capacity of the specimens improved inversely. Based on finite element software ABAQUS, numerical models were developed to calculate both temperature and mechanical fields, the results of which were in good agreement with experimental results. Then, the stress mechanism of eight specimens was analyzed using established numerical models. The analysis results show that with the increase of temperature, the longitudinal stress gradient of the concrete in the specimen column increases while the stress value decreases. The lateral restraint of the stiffeners is capable of restraining the steel outer buckling and enhancing the restraint effect on the concrete.
机译:这项研究调查了六个带有钢管加强筋的薄壁钢管混凝土(CFST)方柱试样和两个未加筋试样在20°C,100°C,200°C,400恒温下的轴向压缩性能°C,600°C和800°C。根据极限承载力,破坏模式和载荷-位移曲线分析了样品在不同温度下的力学性能。实验结果表明,在高温下,即使试件的力学性能下降,导致极限承载力下降,但试件的延性和变形能力反而提高。基于有限元软件ABAQUS,开发了计算温度和机械场的数值模型,其结果与实验结果吻合良好。然后,使用建立的数值模型分析了八个试样的应力机制。分析结果表明,随着温度的升高,试样柱中混凝土的纵向应力梯度增大,而应力值减小。加劲肋的横向约束能够抑制钢的外部屈曲并增强对混凝土的约束效果。

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