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Theoretical and parametric studies of a self-centering modular steel structure connection

机译:自定心模块化钢结构连接的理论与参数研究

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A novel modular steel structure (MSS) connection using symmetrical self-centering (SC) haunch braces is proposed to expand the current research limits and create a modular structure with superior seismic resilient performance and functional recoverability after earthquakes. An advanced connection technique of the modules consisting of a cross-shaped plug-in connector, cover plates, and several bolts is used to provide adequate stiffness and ensure structural integrity. A theoretical model of the self-centering MSS (SC-MSS) connection system is established to evaluate the haunch brace effects on the key components, and the model is validated by simulations. The effects of the dimension of the plug-in connector, the location and performance parameters of the SC haunch brace, and the haunch brace configuration on the seismic resilient performance of the connection are analyzed. The SC-MSS connections exhibit satisfactory self-centering capability, and the bearing capacity is substantially higher than that of the MSS connection. A large tenon height in the connector increases the local strength of the column flanges, ensuring the ductile failure mode in areas of concentrated plasticity in the beams. As the installation distance, angle and pre-stressed force of the SC haunch brace increases, the bearing capacity and self-centering capability of the connection are effectively improved. The stable and expected behavior of the connection with the non-symmetrical haunch configuration demonstrates the feasibility of the independent selection of the haunch patterns of each module. The additional strength and stiffness provided by the SC haunch braces result in acceptable energy dissipation of the SC-MSS connection and significant damage reduction.
机译:建议采用对称自定心(SC)摇头括号的新型模块化钢结构(MSS)连接,以扩大当前的研究限制,并在地震后采用具有优异地震弹性性能和功能可回收性的模块化结构。用于由交叉形插入式连接器,盖板和几个螺栓组成的模块的高级连接技术,用于提供足够的刚度并确保结构完整性。建立了自定心MSS(SC-MSS)连接系统的理论模型,以评估对关键组件的HANCHINCE支撑效果,并且模型通过模拟验证。分析了插入式连接器的尺寸,SC Haunch支撑的位置和性能参数的影响,以及对连接的地震弹性性能的Humunch支撑配置。 SC-MSS连接表现出令人满意的自定心能力,承载力基本上高于MSS连接的能力。连接器中的大榫榫高度增加了柱法兰的局部强度,确保了梁中浓缩可塑性区域的韧性故障模式。作为安装距离,角度和预应力的SC Haunch支撑的力量增加,连接的承载能力和连接的自定心能力得到有效改善。与非对称HAINCED配置的连接的稳定和预期行为展示了每个模块的独立选择的独立选择的可行性。 SC Haunch括号提供的额外强度和刚度导致SC-MSS连接的可接受的能量耗散和显着的损害减少。

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