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Development and seismic retrofit of an innovative modular steel structure connection using symmetrical self-centering haunch braces

机译:采用对称自定向竖撑的创新模块化钢结构连接的开发和地震改造

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As an efficient and environment-friendly technique that combines off-site manufacturing of modules and on-site assembly, modular buildings have been adopted in many areas of the construction industry. This paper proposes an innovative modular steel structure (MSS) connection with bolted cover plates, which inserts a cross-shaped plug-in connector inside the adjacent columns to achieve accurate positioning in the module installation and provide partial shear capacity. A seismic retrofit method using hinged diagonal self-centering (SC) haunch braces is proposed for the MSS connection to improve the seismic performance and achieve functional recoverability after earthquakes. Hysteretic behaviors of the MSS connection and the self-centering MSS (SC-MSS) connection are investigated due to cyclic loadings. Results demonstrate that compared with the MSS connection, the SC-MSS connection is expected to improves strength and stiffness and exhibits stable flag-shaped hysteretic responses with a satisfactory self-centering capability. The hinged diagonal SC haunch braces are capable of reducing the average stress level around the connection core region, controlling the development of plastic damage, avoiding the local failure, and improving the ductility of connection. The present study provides practical connections and important guidance for the applications of modular steel structures in the medium- and high-intensity seismic regions.
机译:作为将场外模块和现场组装的现场制造结合的高效和环保技术,在建筑业的许多领域采用了模块化建筑物。本文提出了一种具有螺栓盖板的创新模块化钢结构(MSS)连接,其在相邻柱内插入交叉形插入式连接器,以实现模块安装中的精确定位并提供部分剪切容量。提出了一种用于使用铰接对角线自定心(SC)六谐波的地震改造方法,用于MSS连接以改善地震性能并在地震后实现功能性可恢复性。由于循环负载,研究了MSS连接和自定心MSS(SC-MSS)连接的歇斯底性行为。结果证明,与MSS连接相比,SC-MSS连接预计会改善强度和刚度,并且具有令人满意的自定心能力的稳定形式的滞后响应。铰接对角线SC Haunch括号能够减小连接芯区域周围的平均应力水平,控制塑料损坏的发展,避免局部故障,提高连接的延展性。本研究为模块化钢结构在中高强度地震区域中的应用提供了实用的连接和重要指导。

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