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Seismic performance of composite joints between prefabricated steel-reinforced concrete columns and steel beams: experimental study

机译:预制钢筋混凝土柱和钢梁复合关节的地震性能:实验研究

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摘要

The joint between beam and column is the crucial zone, which makes the study of seismic performance of fabricated frame structures difficult and challenging. Reliable connection of prefabricated steel-reinforced concrete (SRC) columns with steel beams by a simple and effective dry connection method is a very important technical problem. In view of this, a new type of modular prefabricated SRC column-steel beam composite joint (MPCJ) was developed in this study. Further, the quasi-static test was carried out on three different types of beam-column joints (i.e. bolted-welded hybrid connection, welding connection, and bolted connection), and the failure characteristics, hysteretic behaviour, strain law, ductility, energy dissipation capacity, strength, and stiffness degradation of the new MPCJ under low-cycle reciprocating loads were recorded and analyzed. The results showed that the failure mode of three MPCJ specimens was bending failure at the end of the beam; the MPCJs exhibited stable hysteretic curves, strength deterioration, and stiffness degradation; the ductility coefficients and the equivalent viscous damping coefficients of the three specimens were found to be greater than 4 and 0.2, respectively, which meet the requirements of seismic performance limits. In summary, the new MPCJ has the advantages including large bearing capacity, high construction efficiency, energy saving, and environmental protection. It has important theoretical and practical value for future in-depth study of assembled SRC composite frame structure.
机译:光束和柱之间的关节是关键区域,这使得研究制造框架结构的地震性能困难和具有挑战性。通过简单且有效的干燥连接方法可靠地连接预制钢筋混凝土(SRC)柱的钢梁是一个非常重要的技术问题。鉴于此,在本研究中开发了一种新型的模块化预制SRC柱 - 钢梁复合关节(MPCJ)。此外,在三种不同类型的梁柱接头(即螺栓焊接混合连接,焊接连接和螺栓连接)上进行准静态试验,以及故障特性,滞后行为,应变法,延展性,能量耗散记录和分析了在低循环往复载荷下新MPCJ的能力,强度和刚度降解。结果表明,三个MPCJ样本的故障模式在梁末端弯曲失效; MPCJS表现出稳定的滞后曲线,强度劣化和刚度降解;发现三个样本的延展性系数和等效粘性阻尼系数分别大于4和0.2,其符合地震性能限制的要求。总之,新的MPCJ具有大承载能力,高建筑效率,节能和环保等优点。对未来对组装的SRC复合框架结构的未来深入研究具有重要的理论和实用价值。

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