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Behavior of columns of steel plate shear walls with beam-connected web plates

机译:梁连接腹板的钢板剪力墙立柱特性

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Steel plate shear walls with beam-connected web plates (B-SPSWs) are an alternative configuration of steel plate shear walls (SPSWs) where web plates are connected to the beams only. Detaching web plates from columns and introducing simple beam-column connections in B-SPSWs eliminate flexural demands in the columns resulting from web plate tension field action; consequently, the columns of B-SPSWs are designed primarily for axial loads. A recent study, however, showed that the columns of B-SPSWs resist significant flexural demands during earthquake shaking due to differential interstory drifts that result in significant column rotations at floor levels. Typical design methods (i.e., the Equivalent Lateral Force method and Modal Response Spectrum analysis) do not capture these rotations associated with differential drifts that might lead to column instability. A two-phase numerical study is conducted to evaluate the behavior and stability of B-SPSW columns. In the first phase, three-dimensional nonlinear response-history analyses are conducted to investigate the column stability for eighteen B-SPSWs with different geometric characteristics designed following two design approaches. The results suggest that column buckling is a possible mode of failure for one of the design approaches. In the second phase, a parametric study is undertaken to further investigate potential column buckling failure modes in B-SPSW columns and to establish an upper-bound estimate for the column buckling strength reduction due to column rotations at floor levels that are not considered in traditional design approaches.
机译:带有横梁连接腹板(B-SPSW)的钢板剪力墙是钢板剪力墙(SPSW)的另一种配置,其中腹板仅连接到梁。从立柱上卸下腹板,并在B-SPSW中引入简单的梁柱连接,从而消除了腹板张力场作用导致的立柱挠曲要求。因此,B-SPSW的柱主要设计用于轴向载荷。但是,最近的一项研究表明,B-SPSW的柱在地震震荡期间会承受明显的挠曲要求,这是由于不同的层间漂移导致柱在水平面上的明显旋转所致。典型的设计方法(即等效侧向力方法和模态响应谱分析)无法捕获与可能导致柱不稳定的差分漂移相关的旋转。进行了两阶段的数值研究,以评估B-SPSW色谱柱的性能和稳定性。在第一阶段,进行了三维非线性响应历史分析,以研究采用两种设计方法设计的具有不同几何特征的18个B-SPSW的列稳定性。结果表明,对于一种设计方法,柱屈曲是一种可能的失效模式。在第二阶段中,进行了参数研究,以进一步研究B-SPSW柱中潜在的柱屈曲破坏模式,并确定由于在传统水平下未考虑的柱面旋转引起的柱屈曲强度降低的上限估计设计方法。

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