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Experimental study on seismic performance of CFST frame structures with energy dissipation devices

机译:带消能装置的CFST框架结构抗震性能试验研究

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摘要

Three model structures of concrete filled steel tubular(CFST)frame with a scaling ratio of 1:4 were designed and tested in the present study. The structural elements of the three model structures had same dimensions. Two of them were installed with a new triple-steel tube budding-restrained brace(BRB). The seismic behaviors of the structures were evaluated by testing them with combined vertical constant compression and lateral cyclic loads. The structural performance, such as the hysteretic behavior, skeleton curve, strength degradation, stiffness degradation, energy dissipation capacity and strains at different locations of the model structures with and without BRB was discussed in detail. The results show that the CFST frame with BRB significantly improved the load bearing capacity, the deformability and the energy dissipation capacity, with the strength and stiffness degradation being obviously reduced. The CFST frame with BRB has preferable mechanical behavior and failure mode. It was verified that the new triple-steel tube BRB improves the seismic performance of CFST frame structures.
机译:本研究设计并测试了比例为1:4的钢管混凝土(CFST)框架的三种模型结构。这三个模型结构的结构元素具有相同的尺寸。其中两个安装了新的三重钢管萌芽约束支架(BRB)。通过组合垂直恒定压缩力和侧向循环载荷对其进行测试,评估了结构的抗震性能。详细讨论了带有或不带有BRB的模型结构在不同位置的滞后性能,骨架曲线,强度退化,刚度退化,能量耗散能力和应变等结构性能。结果表明,带有BRB的CFST框架显着提高了承载能力,可变形性和能量耗散能力,强度和刚度下降明显降低。带有BRB的CFST框架具有较好的机械性能和失效模式。事实证明,新型三重钢管BRB改善了CFST框架结构的抗震性能。

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