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Column Moment Demands from Orthogonal Beam Twisting

机译:从正交波束扭转的列时刻要求

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Beam column joint subassemblies in steel moment frames often have simply-supported gravity beams framing into the joint in the perpendicular direction. When these subassemblies undergo lateral displacement, moments enter the column from the beams. Some of these moments are directly applied from the in-plane beam and slab stresses as they contact the column, and additional moments occur as the slab causes the perpendicular simply supported beams to twist. In most design codes around the world, no explicit consideration of these moments is performed even though they may increase the likelihood of column yielding and a soft-storey mechanism. This paper quantifies the magnitude of these perpendicular beam twisting moments in typical subassemblies using inelastic finite element analysis. It is shown that for beam-column-joint-slab subassemblies where the primary and secondary beams are fully welded to the column, the addition of slab effects significantly increases the total stiffness and strength of the composite frame structure. In addition to this, it is also shown the twisting moment demand of the secondary beams increased the frames strength by approximately 2% for an imposed drift of 5% for the subassembly investigated when no gap was provided between slab and the column. It was also shown the twisting moment demand of the secondary beams increased the frames strength by approximately 10% for a maximum imposed drift of 5% for the subassembly investigated when a gap was provided between the slab and the column.
机译:钢时刻框架中的光束柱关节子组件通常具有简单地支撑的重力束在垂直方向上框架进入接头。当这些子组件经历横向位移时,矩之间的时间从光束输入列。这些时刻中的一些是从面内梁和平板应力施加的,因为它们接触柱子,并且随着板坯的额外时刻导致垂直的简单支撑的光束扭曲。在世界各地的大多数设计代码中,即使它们可能提高列产生的可能性和软层面机制,也不会明确考虑这些时刻。本文使用非弹性有限元分析量化典型子组件中这些垂直光束扭转力矩的大小。结果表明,对于将主梁和次级梁完全焊接到柱的光束柱 - 关节板子组件,平板效果的添加显着增加了复合框架结构的总刚度和强度。除此之外,还示出了二次梁的扭转力矩需求,帧强度提高约2%,对于在板坯和柱之间没有间隙没有间隙没有设置间隙时,施加5%的施加漂移。还示出了二次梁的扭转力矩需求,帧强度提高约10%,对于子组件在板坯和柱之间提供间隙时,子组件的最大施加漂移为5%的最大施加漂移。

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