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Experimental study on interior connections in modular steel buildings

机译:模块化钢结构建筑内部连接的实验研究

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In modular steel buildings, traditional architectures are separated into prefabricated room-sized volumetric units that are manufactured offsite and installed onsite. The connections between the modules are important for load transfer. Conventional inter-module connections mainly use direct plates and connect them using bolts; however, this may prove problematic for the inner connecting regions. A new type of design with beam-to-beam bolted connections is proposed in this paper; this design provides easy working access without being affected by the structural members. The static performance, hysteretic performance, skeleton curves, ductile performance, energy dissipation capacity, and stiffness degradation patterns of the joints are obtained by experiments and finite element analyses. The results showed that because of the construction between two unit joints, gaps would be formed between the upper and bottom columns, and this gap can influence the deformation patterns and distribution of bending loads at each unit joint. The weld quality at the unit joints is critical to ensure overall safety. Stiffeners can effectively increase the stiffness and load bearing capacity, but may reduce ductility performance. The deforming ability of the connection is also closely influenced by the stiffness of the floor beam column joint and ceiling beam column joint and their relative intermediate magnitudes. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在模块化钢结构建筑中,传统建筑被分为预制的房间大小的体积单位,这些单位可以在异地制造并在现场安装。模块之间的连接对于负载转移很重要。常规的模块间连接主要使用直接板,并使用螺栓连接。然而,这对于内部连接区域可能是有问题的。本文提出了一种新型的梁对梁螺栓连接设计。这种设计提供了容易的工作通道,而不受结构构件的影响。通过实验和有限元分析获得了接头的静态性能,滞后性能,骨架曲线,延性性能,能量耗散能力和刚度退化模式。结果表明,由于两个单元节点之间的构造,上下柱之间会形成间隙,该间隙会影响每个单元节点的变形模式和弯曲载荷的分布。单元接头处的焊接质量对于确保整体安全至关重要。加强筋可以有效地提高刚度和承载能力,但可能会降低延展性。连接的变形能力还受到底梁柱接头和顶梁柱接头的刚度及其相对中间量的密切影响。 (C)2017 Elsevier Ltd.保留所有权利。

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