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Experimental study of flush end plate beam-to-CFST column composite joints with deconstructable bolted shear connectors

机译:具有可解构的螺栓剪力连接器的齐平端板梁到CFST柱组合节点的试验研究

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This paper presents the results of static tests conducted on four full-scale flush end plate semi-rigid beam-to-column joints in a novel deconstructable and sustainable structural frame system. In this system, precast concrete slabs that are associated with reduced CO2 emissions during their manufacture are attached compositely to a steel beam using a novel method of shear connection that takes advantage of post-installed friction-grip bolted shear connectors and the composite steel beams are connected to concrete-filled steel tubular columns using flush end plates with blind bolts. The proposed structural system can be deconstructed at the end of its service life so that demolition waste is minimised and component recycling is maximised. In addition, application of precast slabs instead of cast in situ conventional concrete slabs can improve the quality of construction, reduce construction time and labour costs and lower the carbon footprint of the structure. The structural response of the beam-to-column joints is assessed under a monotonically increasing static load and the influence of the type of precast concrete slab and bolted shear connectors, as well as degree of shear connection, on the structural performance of this structural system are investigated. The test results show that these novel composite joints have credible rotation and moment capacities according to the recommendations of EC3 and EC4, and fracture of the joints occurs after development of substantial rotation. (C) 2015 Published by Elsevier Ltd.
机译:本文介绍了在新型可分解且可持续的结构框架系统中,对四个全尺寸齐平端板半刚性梁到柱节点进行的静态测试的结果。在该系统中,利用一种新型的剪力连接方法将预制混凝土板在制造过程中减少了CO2的排放,并利用一种新型的剪力连接方法将其连接到钢梁上,该方法利用了安装后的摩擦夹具螺栓剪力连接器的优势,复合钢梁可以使用带盲孔螺栓的齐平端板将其连接到钢管混凝土柱。所提议的结构系统可以在其使用寿命结束时进行解构,从而最大程度地减少了拆迁废料并最大程度地提高了组件回收率。此外,使用预制板代替现浇的常规混凝土板可以提高施工质量,减少施工时间和人工成本,并降低结构的碳足迹。在单调增加的静载荷以及预制混凝土板和螺栓剪力连接器的类型以及剪力连接程度对该结构系统的结构性能的影响下,评估了梁到柱节点的结构响应。被调查。测试结果表明,根据EC3和EC4的建议,这些新颖的复合材料接头具有可靠的旋转和弯矩能力,并且在大量旋转后会发生断裂。 (C)2015年由Elsevier Ltd.出版

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