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Seismic behavior of CFST-enhanced steel plate-reinforced concrete shear walls

机译:CFST加固钢板混凝土剪力墙的抗震性能

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Concrete-filled steel tube-enhanced steel plate-reinforced concrete (CFST-SPRC) shear walls have been proposed for use in super high-rise buildings. This paper presents an experimental study of CFST-SPRC shear walls that aims to evaluate their seismic behavior. Three CFST-SPRC shear wall specimens with varying steel plate thicknesses and concrete strengths were tested under constant axial force and reversed cyclic loading. All of the specimens experienced a progression of failure from web concrete cracking, to local buckling of the steel tube plates, to fracturing of the vertical welds at the corners. One specimen exhibited brittle failure at the end of testing due to the sudden crushing of web concrete. Stable and full hysteretic behavior was developed by the shear wall specimens, indicating a capability for stable energy dissipation. The ultimate drift ratios were around 1.7% for all of the specimens. The flexural and shear deformations of the shear walls, and the base rotation caused by local deformations in the foundation beam, all provided a negligible contribution to the total lateral displacement. The proportions of the flexural displacement, shear displacement and rotational displacement to the total displacement were around 0.6, 02 and 0.2, respectively, for all specimen's throughout the loading process. Simplified design methods were proposed for evaluating the load-carrying capacities of CFST-SPRC shear walls. The proposed method provided reasonable but conservative estimations for the test shear wall specimens. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已经提出了用于超高层建筑的钢管混凝土增强钢板(CFST-SPRC)剪力墙。本文介绍了CFST-SPRC剪力墙的实验研究,旨在评估其抗震性能。在恒定的轴向力和反向循环载荷下测试了三个具有不同钢板厚度和混凝土强度的CFST-SPRC剪力墙试样。从纤维混凝土开裂到钢管板局部屈曲,再到角落的垂直焊缝断裂,所有试样都经历了破坏的进程。由于网状混凝土的突然压碎,一个试样在试验结束时表现出脆性破坏。剪力墙试样产生了稳定而充分的磁滞行为,表明具有稳定的能量消散能力。所有样品的最终漂移率约为1.7%。剪力墙的挠曲和剪力变形,以及由基础梁局部变形引起的基础旋转,对总的横向位移的贡献都可以忽略不计。在整个加载过程中,所有试样的挠曲位移,剪切位移和旋转位移相对于总位移的比例分别约为0.6、02和0.2。提出了简化的设计方法来评估CFST-SPRC剪力墙的承载能力。该方法为剪力墙试件提供了合理但保守的估计。 (C)2015 Elsevier Ltd.保留所有权利。

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