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Influence of compressive load on concrete filled steel tubular column with variable thickness

机译:变厚度挤压钢管柱压缩负荷的影响

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摘要

The concrete-filled tubular (CFT) structure consists of high strength, favourable ductility, fire resistance and huge energy absorption. The cost and time of construction can be reduced as there is no shuttering required for CFT columns. The confinement outcome of CFT column possesses higher stiffness as compared to hollow steel tube columns. In this article, testing is administered on twelve specimens of natural and artificial sand M25 grade CFT columns with a ratio of diameter to variable tube thickness (D/t of 27.72, 22.18 and 18.48). The twelve CFT columns have been tested under axial compression. The behaviour of CFT columns has been studied in terms of axial load-carrying capacity, deflection and buckling effects and compared the behaviour with numerical results determined using Eurocode 4 and AISC 360-10. The performance of CFT columns increased, as the thickness of tube increased with the effective confinement. The experimental and the numerical results of CFT columns have been validated by using ANSYS 14.5. The axial load-carrying capacity of an artificial sand CFT specimen has been improved significantly. Therefore, the natural sand could be replaced with artificial sand for CFT columns.
机译:混凝土管状(CFT)结构包括高强度,良好的延展性,耐火和巨大的能量吸收。由于CFT柱所需的不需要更短,因此可以减少施工的成本和时间。与中空钢管柱相比,CFT柱的监禁结果具有更高的刚度。在本文中,在天然和人造砂M25级CFT柱的十二样标本上施用测试,其直径与可变管厚度(D / T,of 27.72,22.18和18.48)。在轴向压缩下已经测试了12个CFT柱。已经在轴向承载能力,偏转和屈曲效果方面研究了CFT列的行为,并比较了使用EUROCODE 4和AISC 360-10确定的数值结果的行为。随着管的厚度随着有效限制而增加,CFT柱的性能增加。使用ANSYS 14.5验证了CFT柱的实验和数值结果。人造砂CFT样本的轴向承载能力显着提高。因此,天然砂可以用人造砂作为CFT柱代替。

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