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Seismic behavior and design of cruciform bolted module-to-module connection with various reinforcing details

机译:十字形螺栓连接的模块与模块的抗震性能及各种加固设计

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Modular steel constructions (MSC) permits rapid and economical construction and have been increasingly used for high-rise buildings with repetitive units. A new bolted connection with welded cover plate, which can better satisfy the architectural function design, was proposed in this paper. Tests on four full-scale cruciform connections made of hollow structural section (HSS) members with various configurations were conducted under combined axial compression and increasing cyclic rotations to failure. The results showed that the moment resistance capacity of the unreinforced connections was limited due to the brittle weld fracture at the end of the beam while that of the reinforced connections was enhanced considerably, either by external cover plate or triangular-shaped stiffeners, which can guarantee the desired seismic resistance. The seismic performance, including the initial rotational stiffness, moment resistance, ductility and energy dissipation were carefully evaluated. EC3 Part 1-8 was adopted to evaluate the stiffness characteristic of the proposed connection, indicating that the proposed connection can be classified as "semi-rigid" connection. Furthermore, mechanical model was developed and design recommendations were given based on the test results, which will provide useful references for the application of the proposed connection and MSC in seismic region.
机译:模块化钢结构(MSC)可以快速经济地进行建造,并且越来越多地用于具有重复单元的高层建筑。提出了一种新型的焊接盖板螺栓连接,可以更好地满足建筑功能设计要求。在组合轴向压缩和增加循环旋转至破坏的条件下,对由具有各种配置的中空结构截面(HSS)构件制成的四个全尺寸十字形连接进行了测试。结果表明,由于梁端部的脆性焊接断裂,无筋连接的抗弯承载力受到限制,而通过外部盖板或三角形加劲肋可以显着增强筋连接的抗弯承载力,这可以确保所需的抗震性。仔细评估了地震性能,包括初始旋转刚度,抗弯矩,延性和能量耗散。采用EC3第1-8部分来评估所提议连接的刚度特性,表明所提议的连接可以归类为“半刚性”连接。此外,根据试验结果开发了机械模型并给出了设计建议,这将为所建议的连接和MSC在地震地区的应用提供有用的参考。

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