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Stability of Steel Columns in Steel Concentrically Braced Frames Subjected to Seismic Loading

机译:同心支撑钢框架在地震荷载作用下的稳定性

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Lateral loads primarily induce axial loads in members of steel concentrically braced frames but columns may also be subjected to drift induced bending moments that may affect their strength and stability. The article discusses three examples of CBF columns that are subjected to combined axial compression and bending moments in structures under severe seismic ground motions: columns at an intermediate level where soft-story response develops in an existing seismically deficient X-bracing, fixed base columns at the first level of a well-proportioned multi-story X-bracing system, and columns in multi-tiered braced steel frames. Nonlinear dynamic analysis of the columns is performed to examine their stability response under axial and bending demands. In the first two cases, the results indicate that bending moments have limited effects on the global stability of the columns. Conversely, columns in multi-tiered frames must be designed to resist the expected combined axial and flexural demands in order to prevent column instability.
机译:横向载荷主要在钢制同心支撑框架的构件中引起轴向载荷,但立柱也可能会受到漂移引起的弯矩的影响,这些弯矩可能会影响其强度和稳定性。本文讨论了三个CBF柱的示例,这些CBF柱在剧烈地震作用下经受了结构的轴向压缩和弯矩的组合:在中等水平的柱,在现有的抗震X形支撑的基础上发展了软层响应,在该位置固定了基础柱比例合理的多层X支撑系统的第一层,以及多层支撑钢框架中的柱。进行了圆柱的非线性动力学分析,以检查它们在轴向和弯曲需求下的稳定性响应。在前两种情况下,结果表明弯矩对立柱的整体稳定性影响有限。相反,多层框架中的立柱必须设计成能够抵抗预期的轴向和弯曲组合需求,以防止立柱不稳定。

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