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Seismic Behavior of Composite Concrete Filled Steel Tube Column-Wide Flange Beam Moment Connections

机译:钢管混凝土组合柱宽翼缘弯矩节点的抗震性能

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摘要

The results of an experimental research study involving the testing of ten full-scale moment resisting connections under simulated seismic loading conditions are presented. Each test specimen modeled the interior joint of a moment resisting frame consisting of square concrete filled steel tube columns and wide flange steel girders, where energy dissipation was designed to occur either primarily in the beams or in the connection panel zone during a severe earthquake. The results of the study indicate that moment resisting connection details can be economically designed that enable more than 0.045 rad of inelastic story drift to develop under cyclic loading. These details include split-tee connections without a shear tab, weak panel zone connections, and extended tee connections. Panel zone shear yielding and local buckling are shown to be a ductile mode of response, with minimal strength deterioration occurring in the connection. The use of interior diaphragms in the column is shown to locally stiffen the joint, but also lead to strain concentrations and fracture of the beam flanges at their weld access holes. Furthermore, strain concentrations develop at connection details that lack a gradual transition in geometry and result in a reduction in connection ductility.
机译:提出了一项实验研究的结果,其中涉及在模拟地震载荷条件下测试十个全尺寸抗力矩连接。每个测试样本都模拟了一个抗弯框架的内部节点,该框架由方形混凝土填充钢管柱和宽翼缘钢梁组成,在剧烈地震期间,能量耗散主要发生在梁中或连接面板区域中。研究结果表明,可以在经济上设计抗弯连接细节,从而在循环荷载作用下能够产生超过0.045 rad的非弹性层位移。这些详细信息包括不带剪力片的三通连接,薄板区域连接和扩展三通连接。面板区域的剪切屈服和局部屈曲显示为响应的延性模式,在连接中发生的强度下降最小。示出了在柱中使用内部隔膜会局部加固接头,但也会导致应力集中和梁法兰在其焊接孔处断裂。此外,应变集中出现在连接细节处,这些细节缺乏几何上的逐渐过渡,并导致连接延性降低。

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