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Seismic performance of end-plate connections between T-shaped CFST columns and RC beams

机译:T形CFST柱与RC梁之间的端板连接抗震性能

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An innovative end-plate connection is proposed by welding an H-shaped steel corbel to the end-plate and the end-plate is connected to the special T-shape concrete-filled steel tubular (CFST) column using a number of high-strength bolts. This paper presents experimental and numerical studies on the seismic performance of the new end-plate connection between T-shaped CFST columns and reinforced concrete (RC) beams with slabs. Tests of seven specimens are conducted: a specimen is tested under the monotonic loading in order to obtain the load-displacement curve and the development of strains until the failure; and six specimens are tested under cyclic loading. The seismic behaviour of the connections in terms of strength, ductility, energy dissipation, strength degradation and stiffness degradation are evaluated. The experimental results demonstrate that the proposed connections exhibit good seismic performance and that the length of the H-shaped steel corbel and the diameter of the high-strength bolt played important roles in improving the seismic behaviour of the connections. A finite element (FE) model based on ABAQUS is developed and validated by the experimental results for the numerical investigation of the seismic behaviour of the proposed end-plate connections. It has been found that the reinforcement ratio of beam and the concrete strength of the beam and slab can affect the seismic performance of the specimens, but the effect of the axial compressive force ratio of the column on the seismic performance can be neglected. (C) 2018 Published by Elsevier Ltd.
机译:通过将H型钢托梁焊接到端板上,提出了一种创新的端板连接方式,并使用多种高强度将端板连接到特殊的T形钢管混凝土(CFST)柱上螺栓。本文对T形CFST柱与带平板的钢筋混凝土(RC)梁之间的新型端板连接的抗震性能进行了实验和数值研究。进行了七个试样的测试:一个试样在单调载荷下进行测试,以获得载荷-位移曲线以及直至破坏的应变发展;并在循环载荷下测试了六个样本。根据强度,延展性,能量耗散,强度退化和刚度退化评估了连接的抗震性能。实验结果表明,所提出的连接具有良好的抗震性能,H型钢牛腿的长度和高强度螺栓的直径在改善连接的抗震性能方面起着重要作用。建立了基于ABAQUS的有限元(FE)模型,并通过实验结果验证了所提出的端板连接的地震行为的数值研究。已经发现,梁的增强比以及梁和楼板的混凝土强度会影响标本的抗震性能,但是可以忽略柱的轴向压缩比对抗震性能的影响。 (C)2018由Elsevier Ltd.发布

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