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Behaviours of square UHPFRC-filled steel tubular stub columns under eccentric compression

机译:偏心压缩下方uHPFRC填充钢管柱柱的行为

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Applications of ultra-high performance fiber-reinforced concrete (UHPFRC) in composite columns for high-rise buildings or bridges keep increasing to achieve improved structural performances. A testing program with 16 specimens was carried out to study the behaviour of UHPFRC-filled square steel tubular stub columns (UFST-SCs) under eccentric compression. Besides, influences of eccentric ratio (e/r) and thickness of steel tube (t(s)) on the behaviours of UFST-SCs were studied. The UFST-SCs under eccentric compression exhibited three working stages categorized as linear, nonlinear, and recession. Compression-flange yielding of steel tube and crushing of UHPFRC occurred at the elastic limit and peak load point of load-displacement curves, respectively. Despite the increasing e/r ratio decreased the stiffness and ultimate resistance of the UFST-SCs, its ductility was improved. Moreover, increasing thickness of steel tube enhanced the structural resistance of UFST-SCs under eccentric compression. The validations showed that EC4, AISC and GB50936 were conservative on estimating the N-u,-M-u, interaction relationships of UFST-SCs under eccentric compression. Considering the accuracy and reliability, EC4 was recommended to predict the N-u,-M-u interaction curves of UFST-SCs.
机译:超高效纤维混凝土(UHPFRC)在高层建筑物或桥梁复合柱中的应用继续增加,实现了改进的结构性表演。进行了具有16个标本的测试程序,以研究偏心压缩下UHPFRC填充方形钢管管状短柱(UFST-SCS)的行为。此外,研究了偏心率(E / R)和钢管厚度的影响(钢管厚度)研究了UFST-SCs的行为。偏心压缩下的UFST-SCS显示出三个分类为线性,非线性和衰退的工作级。钢管的压缩法兰产量分别发生在钢管的弹性极限和峰值负载曲线上发生钢管和粉碎。尽管E / R比的增加降低了UFST-SCs的刚度和极限阻力,但其延性得到改善。此外,钢管厚度的增加增强了偏心压缩下UFST-SC的结构阻力。验证显示EC4,AISC和GB50936在估计偏心压缩下的N-U,-M-U,UFST-SCS的相互作用关系是保守的。考虑到准确性和可靠性,建议使用EC4来预测UFST-SCS的N-U,-M-U交互曲线。

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