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Experimental and numerical behaviour of eccentrically loaded high strength concrete filled high strength square steel tube stub columns

机译:偏心加载高强方钢管短柱的试验与数值特性。

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Using high strength materials in concrete filled steel tube (CFST) columns is expected to achieve better structural performance and fulfil the requirements of sustainable construction. To study the mechanical behaviour of eccentrically loaded high strength concrete filled high strength square steel tube (HCFHSST) stub columns, this paper describes 12 tests with different eccentricity ratios and steel ratios. The cubic strength of high strength concrete under investigation was 110.5 MPa, and the yield strength of the high strength steel was about 434 MPa. Curves of load-lateral deformation were presented, along with values of ductility index, and the minimum ductility index based on the steel ratio of columns was suggested. Finite element analysis (FEA) software ABAQUS was applied to simulate HCFHSSTs. The analytical results were in good agreement with the experimental ones. The load-lateral deformation curve was divided into four stages: elastic, elastic-plastic, plastic hardening and descending. The confinement effect of steel tube at various stages was analysed. The parametric studies were carried out to evaluate the influences of the eccentricity ratio, concrete compressive strength, steel yield strength and steel ratio on the strength reduction factor(SRF), concrete contribution ratio (CCR), P-M and P/P-u-M/M-u interaction curves of the HCFHSST members. The bending moments at balanced points of P/P-u-M/M-u curves calculated by the plastic stress distribution models (PSDM) and FEA models were compared. The ultimate bearing capacities obtained from the tests and the values calculated from the AISC 360, GB 50936 and CECS 28: 90 design codes were compared. Finally, the formulas were proposed to predict the P/P-u-M/M-u. curves for the HCFHSST stub columns subjected to eccentric load. The proposed formulas' predictions agreed well with the test results.
机译:在钢管混凝土(CFST)柱中使用高强度材料有望获得更好的结构性能并满足可持续建筑的要求。为了研究偏心加载高强度混凝土填充高强度方钢管(HCFHSST)短柱的力学性能,本文描述了12个不同偏心率和钢率的测试。研究中的高强度混凝土的立方强度为110.5 MPa,高强度钢的屈服强度约为434 MPa。给出了载荷-侧向变形的曲线,以及延性指数的值,并提出了基于柱钢比的最小延性指数。应用有限元分析(FEA)软件ABAQUS来模拟HCFHSST。分析结果与实验结果吻合良好。荷载-侧向变形曲线分为四个阶段:弹性,弹塑性,塑性硬化和下降。分析了钢管在不同阶段的约束作用。进行了参数研究,以评估偏心比,混凝土抗压强度,钢筋屈服强度和钢筋比对强度折减系数(SRF),混凝土贡献比(CCR),PM和P / PuM / Mu相互作用曲线的影响。 HCFHSST成员的成员。比较了由塑性应力分布模型(PSDM)和FEA模型计算的P / P-u-M / M-u曲线平衡点处的弯矩。比较了从测试中获得的极限承载力和根据AISC 360,GB 50936和CECS 28:90设计规范计算出的值。最后,提出了用于预测P / P-u-M / M-u的公式。 HCFHSST短柱承受偏心载荷的曲线。提议的公式的预测与测试结果非常吻合。

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