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Seismic performance of a steel frame assembled with a CFST-bordered composite wall structure

机译:用CFST边界复合墙体结构组装钢框架的地震性能

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This paper proposes a steel frame assembled with a concrete-filled steel tubular (CFST)-bordered composite wall structure. The composite wall was fabricated as an assembled seismic member to improve the seismic performance of the steel frame. Therefore, on the basis of a full-sized bare steel frame as a contrast specimen, four full-sized steel frames assembled with CFST-bordered composite wall specimens were designed. The differences among these four specimens include the use of inclined braces in the CFST-bordered composite walls and the different designs of the inclined braces, and these differences are to investigate the influence of the inclined braces on the proposed structures. Low cyclic loading was applied to the specimens, and the seismic behavior of each specimen was analyzed. The experimental results indicated that the seismic performance of the bare frame was greatly enhanced by the assembled CFST-bordered composite wall. The setting of the rebar braces or the CFST braces can significantly increase the yield load, peak load, and dissipation energy capacity, and the inverted V-shaped braces are efficient. The rebar braces can also delay concrete cracking and release strength degeneration. As the first line of defense, the damage of the CFST-bordered composite wall occurs earlier than that of the steel frame, and the damage of the steel frame is slight when the CFST-bordered composite wall is broken. The steel frame can still work as the second line of defense to prevent the collapse of the structure. Furthermore, calculation methods were proposed for determining the bearing capacities of the bare steel frame and the CFST-bordered composite wall based on the failure modes identified during testing and finite element analysis. The calculated results were in good agreement with the test results.
机译:本文提出了一种用混凝土填充钢管(CFST)的复合壁结构组装的钢框架。复合壁作为组装的地震构件制造,以改善钢框架的地震性能。因此,根据具有对比标本的全尺寸裸钢框架,设计了与CFST边界复合墙标本组装的四个全尺寸钢框架。这四种样本中的差异包括在CFST边界复合壁中使用倾斜支架和倾斜支架的不同设计,并且这些差异是研究倾斜支架对所提出的结构的影响。将低循环载荷施加到标本上,分析了每个样本的地震行为。实验结果表明,组装的CFST边界复合壁大大增强了裸框的地震性能。钢筋支撑或CFST括号的设置可以显着提高屈服负荷,峰值负荷和耗散能量,并且倒V形胶带有效。钢筋胶带还可以延迟混凝土裂缝和释放强度变性。作为第一道防线,CFST边界复合墙的损坏比钢框架的损坏发生,并且当CFST边界复合墙破裂时,钢框架的损坏是轻微的。钢框架仍然可以作为第二型防御线,以防止结构的崩溃。此外,提出了基于测试和有限元分析期间识别的故障模式来确定裸钢框架和CFST边界复合壁的承载能力的计算方法。计算结果与测试结果吻合良好。

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