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Experimental study on the compression of concrete filled steel tubular latticed columns with variable cross section

机译:变截面钢管混凝土柱的受压试验研究

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摘要

The effects of slenderness ratio, eccentricity and column slope on the load-carrying capacities and failure modes of variable and uniform concrete filled steel tubular (CFST) latticed columns under axial and eccentric compression were investigated and compared in this study. The results clearly show that all the CFST latticed columns with variable cross section exhibit an overall failure, which is similar to that of CFST latticed columns with a uniform cross section. The load-carrying capacity decreases with the increase of the slenderness ratio or the eccentricity. For 2-m specimens with a slenderness ratio of 9, the ultimate load-carrying capacity is increased by 3% and 5% for variable CFST latticed columns with a slope of 1:40 and 1:20 as compared with that of uniform CFST latticed columns, respectively. For the eccentrically compressed variable CFST latticed columns, the strain of the columns at the loading side, as well as the difference in the strain, increases from the bottom to the cap, and a more significant increase in strain is observed in the cross section closer to the column cap.
机译:研究并比较了细长比,偏心率和柱斜率对可变和均匀钢管混凝土(CFST)格构柱在轴向和偏心受压下的承载能力和破坏模式的影响,并进行了比较。结果清楚地表明,所有具有可变横截面的CFST格子柱都表现出整体破坏,这与具有均匀横截面的CFST格子柱相似。承载能力随着细长比或偏心率的增加而降低。对于细长比为9的2 m标本,与均匀CFST格子相比,斜率1:40和1:20的可变CFST格子柱的极限承载力提高了3%和5%列。对于偏心压缩的可变CFST网格柱,从底部到顶盖,载荷侧柱的应变以及应变差从底部增加,并且在更近的横截面中观察到更大的应变增加到柱帽。

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