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Nonlinear behaviour of beam-to-column connection in reinforced concrete industrialised building system

机译:钢筋混凝土工业化建筑系统中梁到柱连接的非线性行为

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摘要

The connection between beam and column affects directly the integrity of the building structure, In precast reinforced concrete Industrialised Building Systems (IBS), complexity often occurred in the implementation of a new type of beam-to-column connection. "This is due to the new IBS arrangement and the consequent new interaction between the jointed elements of beam and column, In this study, an innovative new type of semi-rigid beam-to-column connection, called SMART IBS consisting of beam to column steel connectors and reinforced concrete elements cast together were detailed out. Four full scale experimental tests were conducted to achieve the real behaviour of the connection in H-shape and Cruciform sub-frames. The tests were supplemented with conventional monolithic models representing the moment resisting connection for comparison of structural specifications. Moreover, for obtaining more comprehensive behaviour, nonlinear finite element analysis (NLFEA) using ABAQUS software was conducted. Furthermore, the whole behaviour of IBS using this new connection was researched through 3D linear analysis to include gravitational and seismic time-history loads using SAP 2000 software, The response of the connection was investigated through the study of the ultimate loading capacity, ductility ratio, load-displacement, moment-rotation, modes of failure and crack patterns. The results of this research confirmed that the new SMART IBS beam-to-column connection was a semi-rigid connection with extra beneficial ductility in comparison with conventional reinforced concrete connection. The ultimate strength of the SMART IBS beam-to-column connection was equal to the conventional model. Furthermore, the results of NLFEA were matched up to 90"/0 with experimental tests. In terms of seismic performance, a three dimensional building of SMART IBS seismic performance was better than the conventional reinforced concrete frames.
机译:梁与柱之间的连接直接影响建筑结构的完整性。在预制钢筋混凝土工业建筑系统(IBS)中,实施新型梁-柱连接通常会带来复杂性。 “这是由于新的IBS布置以及梁与柱的节点之间的新相互作用,在这项研究中,一种创新的新型半刚性梁对柱连接称为SMART IBS,它由梁到柱组成详细说明了钢连接器和钢筋混凝土浇铸在一起的情况,并进行了四个全面的实验测试,以实现H型和十字形子框架中连接的真实行为,并用代表抵抗弯矩的传统整体模型进行了补充。为了比较结构规格,还为了获得更全面的性能,使用ABAQUS软件进行了非线性有限元分析(NLFEA),此外,还通过3D线性分析研究了使用这种新连接的IBS的整体性能,包括重力和地震时间SAP 2000软件对历史负载进行加载,通过t调查了连接的响应他研究了极限载荷能力,延性比,载荷位移,力矩旋转,破坏模式和裂纹模式。这项研究的结果证实,与传统的钢筋混凝土连接相比,新的SMART IBS梁到柱连接是半刚性连接,具有额外的有益延展性。 SMART IBS梁到柱连接的极限强度与常规模型相同。此外,NLFEA的结果在实验测试中达到了90“ / 0。就抗震性能而言,SMART IBS三维建筑物的抗震性能要优于传统的钢筋混凝土框架。

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    Moghadasi Mostafa;

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  • 年度 2013
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