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首页> 外文期刊>Journal of Constructional Steel Research >Steel-timber composite beam-to-column joints: Effect of connections between timber slabs
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Steel-timber composite beam-to-column joints: Effect of connections between timber slabs

机译:钢木复合梁对柱节点:木板之间的连接效果

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Studies of steel-timber composite (STC) connections and STC beams under sagging bending have been reported elsewhere in the literature using push-out and four-point bending tests respectively. However, the structural behaviour of STC beam-to-column connections under hogging bending moments (with the prefabricated timber slabs in tension) have hitherto not been investigated. In particular, the connection between the two prefabricated timber slab panels (across the column) has a major influence on the structural performance of a STC beam-to-column connection and is the focus of the current study. Eight full-scale STC beam to steel column cruciform specimens with different connections (half lap, single and double surface spline with timber and/or steel plate) for the timber slabs were fabricated and tested under a monotonically increasing downwards displacement, and these are described in this paper. The bending moment capacity, rotation capacity, failure mode, stiffness and ductility of the STC connections are evaluated and discussed. The composite steel-timber system exhibits both appreciable ductility and rotation capacity which fulfil the existing design requirements for semi-rigid composite connections in Eurocodes EC3 and EC4. Furthermore, the negative bending moment capacity of STC connections is significantly higher than that of bare steel connections without a timber slab. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在下垂弯曲下对钢木复合材料(STC)连接和STC梁的研究已分别在文献中的其他地方使用推拉和四点弯曲试验进行了报道。但是,迄今为止,尚未研究STG梁到柱连接在弯弯弯矩作用下的结构行为(预制木板处于张紧状态)。特别是,两个预制木板面板之间(跨柱)之间的连接对STC梁到柱连接的结构性能具有重大影响,并且是当前研究的重点。制作了八个用于木板的具有不同连接方式(半搭接,带木材和/或钢板的单面花键和双面花键)的STC梁到钢柱十字形试样,并在单调递增的向下位移下进行了测试,并进行了描述。在本文中。对STC连接的弯矩能力,旋转能力,破坏模式,刚度和延性进行了评估和讨论。钢木复合材料系统具有出色的延展性和旋转能力,可以满足欧洲法规EC3和EC4中半刚性复合材料连接的现有设计要求。此外,STC连接的负弯矩能力明显高于没有木板的裸钢连接。 (C)2018 Elsevier Ltd.保留所有权利。

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