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首页> 外文期刊>Journal of Constructional Steel Research >Seismic performance of bolted connection of H-beam to HSS-column with web end-plate
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Seismic performance of bolted connection of H-beam to HSS-column with web end-plate

机译:带梁端板的H型钢与HSS柱螺栓连接的抗震性能

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This paper presents an experimental study on a bolted joint for connecting H-section steel beams to square hollow structural steel (HSS) columns and connecting upper and lower HSS columns in a multi-storey prefabricated steel structure. The components within a module are welded together in the factory, and the modules are assembled on site using high-strength bolts. A rigid connection or a semi-rigid connection can be achieved by adjusting the number and size of bolts. The stiffness of semi-rigid bolted connection changes with the load. The connection is rigid during minor and moderate earthquakes, whereas during major earthquakes, the cover plate slips relative to the beam flange to dissipate energy. In this paper, model tests and finite element analysis (FEA) of the seismic performance under cyclic loads are conducted on six full-scale connections, and the results are compared with the results of a welded connection. The failure mode, slip behaviour, variation and distribution of the bolt tensions, and seismic performance of the connections, including the hysteretic behaviour, skeleton curve, ductility, rotational capacity and stiffness degradation, are obtained. The influences of the number of bolts and the thickness of cover plate on the mechanical and seismic properties are studied. The results show that a reasonable larger bolt hole can facilitate the installation and improve the ductility and energy dissipation capability without significantly affecting the load-carrying capacity of the connection. The results show that the proposed bolted connection has good hysteresis behaviour, energy dissipation and ductility. It is suitable for earthquake-resistant structures. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文对多层预制钢结构中将H型钢梁连接到方形空心结构钢(HSS)柱并将上下HSS柱进行螺栓连接的实验进行了研究。模块内的组件在工厂已焊接在一起,并且使用高强度螺栓在现场组装了模块。可以通过调整螺栓的数量和尺寸来实现刚性连接或半刚性连接。半刚性螺栓连接的刚度随载荷而变化。在小地震和中地震中,连接是刚性的,而在大地震中,盖板相对于梁的凸缘滑动以耗散能量。本文对六个全尺寸连接进行了循环荷载作用下的抗震性能的模型测试和有限元分析,并将其结果与焊接连接的结果进行了比较。获得了失效模式,滑动特性,螺栓张力的变化和分布以及连接的抗震性能,包括磁滞特性,骨架曲线,延性,旋转能力和刚度退化。研究了螺栓数量和盖板厚度对力学性能和抗震性能的影响。结果表明,合理的较大螺栓孔可以方便安装,并改善延展性和能量耗散能力,而不会显着影响连接的承载能力。结果表明,所提出的螺栓连接具有良好的磁滞性能,能量耗散性和延展性。适用于抗震结构。 (C)2019 Elsevier Ltd.保留所有权利。

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