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Effect of connection modeling on the seismic response of steel braced non-moment resisting frames

机译:连接建模对无弯矩钢支撑框架地震响应的影响

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Non-moment beam-to-column connections, which are usually referred to as simple or shear connections, are typically designed to carry only gravity loads in the form of vertical shears. Although in the analysis of structures these connections are usually assumed to be pinned, they may provide a small amount of rotational stiffness due to the typical connection details. This paper investigates the effects of this small rotational restraint of simple beam-to-column connections on the behavior and seismic response of steel braced non-moment resisting frames. Two types of commonly used simple connections with bolted angles, i.e., the Double Web angle Connection (DWC) and Unstiffened Seat angle Connection (USC) are considered for this purpose. In addition to the pinned condition - as a simplified representation of these connections - more accurate semi-rigid models are established and then applied to some frame models subjected to nonlinear pushover and nonlinear time history analyses. Although the use of bracing elements generally reduces the sensitivity of the global structural response to the behavior of connections, the obtained results indicate considerable effects on the local responses. Namely, our results show that consideration of the real behavior of connections is essential in designing the column elements where the pin-connection assumption significantly underestimates design of outer columns of upper stories.
机译:非力矩梁到柱的连接通常称为简单或剪切连接,通常设计为仅承受垂直剪切形式的重力载荷。尽管在结构分析中通常假定这些连接是固定的,但由于典型的连接细节,它们可能会提供少量的旋转刚度。本文研究了这种简单的梁到柱连接的较小旋转约束对钢制无弯矩支撑框架的性能和地震响应的影响。为此,考虑了两种常见的带螺栓角的简单连接,即双腹板角连接(DWC)和非加硬座角连接(USC)。除了固定条件(作为这些连接的简化表示)之外,还建立了更准确的半刚性模型,然后将其应用于经过非线性推覆和非线性时程分析的某些框架模型。尽管使用支撑元件通常会降低整体结构响应对连接行为的敏感性,但获得的结果表明对局部响应有相当大的影响。即,我们的结果表明,在设计圆柱单元时,必须考虑连接的实际行为,在这种情况下,引脚连接假设会严重低估上层建筑的外圆柱的设计。

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