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首页> 外文期刊>Earthquake Engineering & Structural Dynamics >Modeling of the composite action in fully restrained beam-to-column connections: implications in the seismic design and collapse capacity of steel special moment frames
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Modeling of the composite action in fully restrained beam-to-column connections: implications in the seismic design and collapse capacity of steel special moment frames

机译:完全约束的梁到柱连接中的复合作用建模:对钢特殊弯矩框架的抗震设计和破坏能力的影响

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摘要

This paper investigates the effect of the composite action on the seismic performance of steel special moment frames (SMFs) through collapse. A rational approach is first proposed to model the hysteretic behavior of fully restrained composite beam-to-column connections, with reduced beam sections. Using the proposed modeling recommendations, a system-level analytical study is performed on archetype steel buildings that utilize perimeter steel SMFs, with different heights, designed in the West-Coast of the USA. It is shown that in average, the composite action may enhance the seismic performance of steel SMFs. However, bottom story collapse mechanisms may be triggered leading to rapid deterioration of the global strength of steel SMFs. Because of composite action, excessive panel zone shear distortion is also observed in interior joints of steel SMFs designed with strong-column/weak-beam ratios larger than 1.0. It is demonstrated that when steel SMFs are designed with strong-column/weak-beam ratios larger than 1.5, (ⅰ) bottom story collapse mechanisms are typically avoided; (ⅱ) a tolerable probability of collapse is achieved in a return period of 50 years; and (ⅲ) controlled panel zone yielding is achieved while reducing the required number of welded doubler plates in interior beam-to-column joints.
机译:本文研究了复合作用对倒塌时钢特殊弯矩框架(SMF)抗震性能的影响。首先提出了一种合理的方法来模拟完全约束的复合梁到柱连接的滞后行为,并减少梁的截面。使用提出的建模建议,对在美国西海岸设计的利用不同高度的周边钢SMF的原型钢结构建筑物进行了系统级分析研究。结果表明,平均而言,复合作用可以增强钢制SMF的抗震性能。但是,可能会触发底层崩溃机制,从而导致钢制SMF的整体强度快速下降。由于存在复合作用,在设计的强柱/弱梁比率大于1.0的钢制SMF的内部接缝中也观察到了过度的面板区域剪切变形。事实证明,当设计钢制SMF的强柱/弱梁比率大于1.5时,通常可以避免(ⅰ)底部倒塌机制。 (ⅱ)在50年的回归期内达到了可容许的崩溃概率; (ⅲ)在减少内部梁对柱连接处所需的焊接双工板数量的同时,实现了可控制的面板区域屈服。

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