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Experimental study on seismic behaviour of shear wall with reinforcement of column form,concrete-filled steel tubular frames and diagonal bars

机译:柱形柱形钢管焊墙抗震性能的实验研究,混凝土钢管框架和对角线杆

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In order to reasearch and develop more efficient anti-seismic system of high-rise building structures, a new shear wall with reinforcement of column form,concrete-filled steel tubular frames and diagonal bars was put forward in this paper. Three shear wall specimens with different structural form were designed and made, and then tested by the low-cycle loading experiment. According to the test results, anti-seismic behaviour indexes such as failure characteristics, bearing capacity, ductility, and stiffness degradation of three specimens were analized. The ABAQUS model of new shear walls was established. The experimental results show that, compared with other specimens, the anti-seismic energy dissipation capacity and bearing capacity of the shear wall specimen with reinforcement of column form,concrete-filled steel tubular frames and diagonal bars is enhanced significantly, and the process of stiffness degradation is more slow. The column-form reinforcement can improve ductility, and the concrete-filled steel tubular frames can guarantee the lateral stiffness.
机译:为了重新搜索和开发更高效的高层建筑结构的抗震系统,本文提出了一种具有柱形,混凝土钢管框架和对角线的加固的新型剪力墙。设计并制造了三种具有不同结构形式的剪切墙样本,然后通过低循环负载实验进行测试。根据试验结果,分析了抗震性能指标,如失效特性,承载力,延展性和三个标本的刚度降解。建立了新剪力墙的ABAQUS模型。实验结果表明,与其他标本相比,剪力墙试样的抗震能量耗散能力和承载力,具有柱形,混凝土填充的钢管框架和对角线杆的增强,并显着增强了刚度的过程劣化更慢。柱形增强件可以改善延展性,并且混凝土钢管框架可以保证横向刚度。

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