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Shear strength analyses of internal diaphragm connections to CFT columns

机译:内部隔膜连接到CFT色谱柱的抗剪强度分析

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摘要

Previous theoretical equations for the shear capacity of steel beam to concrete filled steel tube (CFT) column connections vary in the assumptions for the shear deformation mechanisms and adopt different equations for calculating shear strength of each component (steel tube webs, steel tube flanges, diaphragms, and concrete etc.); thus result in different equations for calculating shear strength of the joint. Besides, shear force-deformation relations of the joint, needed for estimating building drift, are not well developed at the present. This paper compares previously proposed equations for joint shear capacity, discusses the shear deformation mechanism of the joint, and suggests recommendations for obtaining more accurate predictions. Finite element analyses of internal diaphragm connections to CFT columns were carried out in ABAQUS. ABAQUS results and theoretical estimations of the shear capacities were then used to calibrate rotational springs in joint elements in OpenSEES simulating the shear deformation behavior of the joint. The ABAQUS and OpenSEES results were validated with experimental results available. Results show that: (1) shear deformation of the steel tube dominates the deformation of the joint; while the thickness of the diaphragms has a negligible effect; (2) in OpenSEES simulation, the joint behavior is highly dependent on the yielding strength given to the rotational spring; and (3) axial force ratio has a significant effect on the joint deformation of the specimen analyzed. Finally, modified joint shear force-deformation relations are proposed based on previous theory.
机译:先前的钢梁到钢管混凝土(CFT)柱连接的抗剪承载力的理论公式在剪切变形机制的假设中有所不同,并采用不同的公式来计算每个组件(钢管腹板,钢管法兰,隔板)的抗剪强度,以及混凝土等);因此得出用于计算接头抗剪强度的不同方程式。此外,估计建筑物漂移所需的接缝的剪切力-变形关系目前还没有得到很好的发展。本文比较了先前提出的节理抗剪承载力方程,讨论了节理的剪切变形机理,并提出了获得更准确预测的建议。在ABAQUS中对CFT色谱柱的内部隔膜连接进行了有限元分析。然后,ABAQUS结果和剪切能力的理论估计值被用于校准OpenSEES中关节单元中的旋转弹簧,以模拟关节的剪切变形行为。 ABAQUS和OpenSEES结果通过可用的实验结果进行了验证。结果表明:(1)钢管的剪切变形主导了接头的变形;膜片的厚度影响可忽略不计; (2)在OpenSEES仿真中,接头的性能高度取决于旋转弹簧的屈服强度; (3)轴向力比对分析试样的接头变形有显着影响。最后,在先前理论的基础上,提出了改进的联合剪力-变形关系。

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