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Development and testing of hybrid precast steel-reinforced concrete column-to- H shape steel beam connections under cyclic loading

机译:循环加载下混合预制钢筋混凝土柱形钢梁连接的开发与测试

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摘要

This paper proposes a steel-reinforced concrete column-steel beam composite joint (MPCJ) suitable for modular prefabricated building construction and investigates its seismic performance. The proposed MPCJ has simple structure, convenient construction, and good bearing capacity. This study performs an experimental investigation in which three MPCJ specimens with different beam-column connections (bolted connection, welded connection, and bolted-welded hybrid connection) are subjected to low-cycle reversed loading and are investigated for the elastic and elastoplastic development trends, failure characteristics, and seismic response. Each specimen undergoes bending failure at the end of the beam that follows the buckling of the flange connecting plate. MPCJs exhibit stable hysteretic curves, reasonable strength and stiffness degradation, as well as good ductility and energy dissipation performance. The ductility coefficients and the equivalent viscous damping coefficients of MPCJ specimens are within the seismic performance limits prescribed by structural design standards. The joint rotation of an MPCJ caused by shear deformation appears different from that of conventional beam-column joints. Finite element models of MPCJ specimens are established by ABAQUS, and the finite element results are compared with the experimental results, thus verifying the feasibility and accuracy of the finite element models. Based on the experimental findings and the numerical validation, simplified equations are proposed for calculating the flexural and shear bearing capacity of an MPCJ. The proposed MPCJ connection will be useful in the modular construction of concrete-steel composite frame structures.
机译:本文提出了一种适用于模块化预制建筑结构的钢筋混凝土柱 - 钢梁复合接头(MPCJ),并调查其地震性能。拟议的MPCJ结构简单,结构方便,承载力良好。本研究执行实验研究,其中具有不同光束柱连接(螺栓连接,焊接连接和螺栓焊接混合连接)的三个MPCJ样本经受低循环反转负荷,并针对弹性和弹性塑性发育趋势进行研究,失败特征和地震反应。每个试样在沿凸缘连接板的屈曲的束末端进行弯曲失效。 MPCJS表现出稳定的滞后曲线,合理的强度和刚度降解,以及良好的延展性和能量耗散性能。 MPCJ样本的延展性系数和等效粘性阻尼系数在结构设计标准规定的地震性能范围内。由剪切变形引起的MPCJ的关节旋转出现不同于传统光束柱接头的速度。 MPCJ样本的有限元模型由ABAQUS建立,与实验结果进行了有限元结果,从而验证了有限元模型的可行性和准确性。基于实验结果和数值验证,提出了简化方程,用于计算MPCJ的弯曲和剪切承载力。所提出的MPCJ连接可用于混凝土钢复合框架结构的模块化构造。

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