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Seismic Capacity Estimation of Steel Plate Concrete (SC) Shear Wall Specimens by Nonlinear Static Analyses

机译:用非线性静力分析估算钢板混凝土剪力墙的抗震能力

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摘要

This study focuses on the structural behavior of the Steel Plate Concrete (SC) shear wall subjected to the lateral forces. An analytical approach to model the nonlinear behavior of the SC shear wall member efficiently is introduced in this paper. The pushover test results of the SC shear wall specimens in the previous study were first reviewed. Then, through the Finite Element (FE) modeling and structural analyses, the lateral load responses of the composite wall models were predicted to compare with experimental results. More specifically, nonlinear static analyses were performed to estimate the seismic capacity of the SC shear wall. The failure modes, strength and stiffiiess characteristics of the composite walls were obtained from the analyses. Good concurrences in the initial stiffiiess and displacement outcomes of the FE model and experimental results along with similar overall behavior were observed. It was also found that the analytical results depend a lot on the interface contact (i.e., boundary conditions between concrete and studs, steel reinforcement and welded studs, respectively) while modeling the SC shear wall using FE.
机译:这项研究的重点是承受侧向力的钢板混凝土剪力墙的结构性能。本文介绍了一种有效地建模SC剪力墙构件非线性行为的分析方法。首先回顾了先前研究中的SC剪力墙试样的推覆测试结果。然后,通过有限元(FE)建模和结构分析,预测了复合墙模型的侧向荷载响应,并将其与实验结果进行比较。更具体地说,进行了非线性静力分析以估计SC剪力墙的抗震能力。通过分析获得了复合材料墙的破坏模式,强度和刚度特性。观察到有限元模型的初始刚度和位移结果以及实验结果以及相似的整体行为具有良好的一致性。还发现,在使用有限元建模SC剪力墙时,分析结果在很大程度上取决于界面接触(即,混凝土和螺柱之间的边界条件,钢筋和焊接螺柱)。

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