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Experimental and numerical studies of circular sandwiched concrete axially loaded CFDST short columns

机译:圆形夹层混凝土轴向加载CFDST短柱的实验和数值研究

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This paper aims to experimentally and numerically investigate the compressive behavior of circular concrete filled double-skin steel tubular (CFDST) short columns, in which only the sandwiched concrete is under axial compression. In total, 28 CFDST columns were loaded axially, and their axial load-shortening curves, ultimate strength and failure modes were briefly discussed. Results suggest that the wall thickness and yield stress of outer steel tube have a significant effect on the failure modes, while the concrete strength shows an insignificant effect. The tested columns exhibited good ductility concerned by seismic resistant design. The ultimate strength of the columns using STK490 outer steel tubes was about 20-26% than that of ones with STK400 outer steel tubes. With an increase in the concrete strength and wall thickness of outer steel tube, the ultimate strength of the columns was improved by 32% and 43%, respectively. Moreover, finite element (FE) models were established and verified by comparing with the test results, and then an extensive parametric analysis was carried out to ascertain the effects of key variables on the compressive behaviour of the studied CFDST short columns. Finally, based on the numerical and test results, a novel formula was proposed to estimate the ultimate strength of CFDST columns, and high prediction performance was found in the proposed formula. The proposed formula is not only applicable for the strength prediction of CFDST columns, but also for that of steel tube confined concrete (STCC) columns.
机译:本文旨在通过实验和数值研究圆形混凝土填充双皮管(CFDST)短柱的压缩行为,其中仅夹层混凝土处于轴向压缩。总共轴向装载28个CFDST柱,并简要讨论了它们的轴向载荷缩短曲线,最终强度和故障模式。结果表明,外钢管的壁厚和屈服应力对失效模式有显着影响,而混凝土强度显示出微不足道的效果。测试柱通过地震抗性设计表现出良好的延展性。使用STK490外钢管的柱的极限强度约为与STK400外钢管的柱子约20-26%。随着外钢管的混凝土强度和壁厚的增加,柱的最终强度分别提高了32%和43%。此外,通过与测试结果进行比较建立和验证有限元(FE)模型,然后进行广泛的参数分析,以确定关键变量对所研究的CFDST短柱的压缩行为的影响。最后,基于数值和测试结果,提出了一种新的公式来估计CFDST柱的最终强度,并且在所提出的公式中发现了高预测性能。所提出的公式不仅适用于CFDST柱的强度预测,而且仅适用于钢管混凝土(STCC)柱的强度预测。

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