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Structural design of steel fibre reinforced concrete in-filled steel circular columns

机译:钢纤维混凝土填充圆柱的结构设计

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摘要

This paper presents the behavior and design of axially loaded normal and steel fiber reinforced concrete in-filled steel tube (SFRCFT) columns, to examine the contribution of steel fibers on the compressive strength of the composite columns. Non-linear finite element analysis model (FEA) using ANSYS software has been developed and used in the analysis. The confinement effect provided by the steel tube is considered in the analysis. Comparisons of the analytical model results, along with other available experimental outputs from literature have been done to verify the structural model. The compressive strength and stiffness of SFRC composite columns were discussed, and the interpretation of the FEA model results has indicated that, the use of SFRC as infill material has a considerable effect on the strength and stiffness of the composite column. The analytical model results were compared with the existing design methods of composite columns - (EC4, AISC/LRFD and the Egyptian code of Practice for Steel Construction, ECPSC/LRFD). The comparison indicated that, the results of the FEA model were evaluated to an acceptable limit of accuracy. The code design equations were modified to introduce the steel fiber effect and compared with the results of the FEA model for verification.
机译:本文介绍了轴向受力的普通和钢纤维增强混凝土填充钢管(SFRCFT)柱的性能和设计,以研究钢纤维对复合柱抗压强度的影响。已经开发了使用ANSYS软件的非线性有限元分析模型(FEA)并将其用于分析。分析中考虑了钢管提供的约束作用。分析模型结果与文献中其他可用的实验结果进行了比较,以验证结构模型。讨论了SFRC复合材料柱的抗压强度和刚度,对FEA模型结果的解释表明,使用SFRC作为填充材料对复合材料柱的强度和刚度有相当大的影响。将分析模型的结果与复合柱的现有设计方法进行了比较(EC4,AISC / LRFD和埃及钢结构施工规范ECPSC / LRFD)。比较表明,FEA模型的结果被评估为可接受的精度极限。修改了代码设计方程,以引入钢纤维效应,并与FEA模型的结果进行比较以进行验证。

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