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Finite element analysis of square concrete-filled steel tube (CFST) columns under axial compressive load

机译:方钢管混凝土柱轴向压缩载荷的有限元分析

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摘要

The confinement provided in concrete-filled steel tube (CFST) columns can significantly increase the strength and ductility of the concrete columns. However, in non-circular CSFT, the confining stresses are non-uniform and anisotropic, making their incorporation in structural analysis and design fairly difficult. Herein, a novel finite element (FE) model, which takes into account the lateral. expansion and triaxial behaviour of the confined concrete, plastic behaviour of the steel tube and interaction at the concrete-steel tube interface in the evaluation of the confining stress field, is developed. It is applied to analyse a total of 92 axially loaded square CFST specimens published in the literature with concrete cylinder strength ranging from 24 to 110 MPa, steel yield strength from 262 to 835 MPa and steel tube depth-to-thickness ratio from 18 to 102. Overall, the FE analysis yielded full-range load-strain curves in good agreement with the experimental results. Using the new FE model, parametric studies on the effects of corner radius have been conducted and it is found that increasing the corner radius would produce better confinement at post-peak stage and thus would improve the post-peak behaviour of square CFST columns.
机译:钢管混凝土柱(CFST)中提供的限制可以显着提高混凝土柱的强度和延展性。但是,在非圆形CSFT中,约束应力是不均匀且各向异性的,这使得将它们纳入结构分析和设计中相当困难。在这里,一种新颖的有限元(FE)模型考虑了横向。研究了承压混凝土的膨胀和三轴行为,钢管的塑性行为以及在承压应力场评估中混凝土-钢管界面的相互作用。用于分析文献中发表的总共92个轴向加载的方形CFST标本,混凝土圆柱体强度范围为24至110 MPa,钢屈服强度范围为262至835 MPa,钢管深厚比为18至102总体而言,有限元分析得出的全范围荷载应变曲线与实验结果吻合良好。使用新的有限元模型,已经对拐角半径的影响进行了参数研究,发现增加拐角半径将在峰后阶段产生更好的限制,从而改善方形CFST柱的峰后性能。

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