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Steel plate-restraining panel interaction behavior in buckling-restrained steel plate shear walls

机译:钢板限制面板在屈曲束缚钢板剪切墙中的相互作用行为

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摘要

A simplified model of the buckling-restrained steel plate shear wall (BRSPSW) was developed to simulate the steel plate-restraining panel interaction behavior that considers the high-order buckling deformation of steel plates. Based on the analysis of the simplified model, a theoretical equation to determine the out-of-plane interaction force was developed. Additionally, a push-over test was conducted to determine the interaction force between the steel plate and restraining panels. The results were used to validate the theoretical and finite element (FE) analyses. Furthermore, the FE method was applied to analyze the steel plate-restraining panel interaction behavior, and the effect of the gap on the out-of-plane interaction force was investigated. The FE results show that the interaction force of a thinner steel plate is higher than that of a thicker plate. As the gap increases, the interaction force increases rapidly to the peak value and then reduces gradually. Finally, the theoretical and FE results were compared. It was found that the theoretical equation can be used to calculate the out-of-plane interaction forces of BRSPSWs.
机译:开发了一种屈曲束缚钢板剪力墙(BRSPSW)的简化模型,以模拟钢板限制面板相互作用行为,以考虑钢板的高阶屈曲变形。基于对简化模型的分析,开发了确定基于平面外相互作用力的理论方程。另外,进行了推挽测试以确定钢板和抑制面板之间的相互作用力。结果用于验证理论和有限元(Fe)分析。此外,应用Fe方法来分析钢板限制面板相互作用行为,并研究了间隙对平面外相互作用力的影响。 Fe结果表明,较薄的钢板的相互作用力高于更厚的板材。随着间隙的增加,相互作用力迅速增加到峰值,然后逐渐减少。最后,比较了理论和Fe结果。发现理论方程可用于计算BRSPSWS的平面外交互力。

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