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Parametric study and equation of the maximum SCF for concrete filled steel tubular T-joints under axial tension

机译:钢管混凝土T形接头最大拉力的参数研究与方程

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Concrete-filled steel tubular joints are increasingly being used for built infrastructure such as bridges and towers. In this study, the variation of the maximum Stress Concentration Factor (SCFmax) with non-dimensional geometric parameters in concrete-filled steel tubular (CFST) T-joints under axial tension has been investigated. A database of the maximum SCFs in CFST T-joints under axial tension is developed based on three-dimensional (3D) finite element (FE) models. The 3D FE models developed using ABAQUS software have been verified using experimental results. Graphs showing variation of the maximum SCF, in CFST T-joints, with non-dimensional geometric parameters have been produced and compared with those for non-filled empty T-joints. A parametric equation for predicting the maximum SCFs in CFST T-joints, a useful parameter for design, has been developed in a multiple nonlinear regression analysis. There is a good agreement between the maximum SCFs predicted by the parametric equation and those determined from the experiments.
机译:钢管混凝土接头越来越多地用于建筑基础设施,例如桥梁和塔楼。在这项研究中,研究了最大应力集中因子(SCFmax)随轴向尺寸在钢管混凝土(CFST)T形接头中的无量纲几何参数的变化。基于三维(3D)有限元(FE)模型,建立了轴向拉力下CFST T型接头中最大SCF的数据库。使用实验结果验证了使用ABAQUS软件开发的3D FE模型。生成了显示CFST T形接头中最大SCF随无尺寸几何参数变化的图表,并将其与未填充的空T形接头进行了比较。在多元非线性回归分析中,已经开发出了用于预测CFST T形接头中最大SCF的参数方程,这是设计有用的参数。参数方程式预测的最大SCF与实验确定的最大SCF之间有很好的一致性。

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