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Mechanical performance of modular FRP-steel composite beams for building construction

机译:建筑用模块化玻璃钢-钢组合梁的力学性能

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This paper presents an experimental and modelling investigation into modular web-flange fibre-reinforced polymer (FRP)-steel composite systems for use in building floor construction. The modular FRP slabs are formed from adhesively bonding pultruded box profiles sandwiched between two flat panels. They are then connected via adhesive or novel bolted connections to steel beams to form a composite system. Two different fibre (pultrusion) configurations are investigated in this paper: flat panel pultrusion with direction either parallel or perpendicular to the box profiles. Composite beams were tested under four-point bending and evaluated for bending stiffness, load-carrying capacity, and the degree of composite action within the FRP web-flange sandwich slab and that provided by the shear connections. All the composite beams showed ductile load-deflection responses, with yielding of the composite beam commencing prior to failure of the FRP slabs. Furthermore, adhesive bonding provided full composite action, but the novel bolted connections with a certain spacing provided either full or partial composite action, dependent on the pultrusion configuration of the FRP slab. Finally, an analytical procedure is presented to evaluate the bending stiffness and load-carrying capacity of the composite beams. Finite element analysis was also employed in this study, showing good comparisons to the experimental results.
机译:本文介绍了用于建筑地板结构的模块化腹板-法兰-纤维增强聚合物(FRP)-钢复合系统的实验和模型研究。模块化FRP板是由夹在两块平板之间的拉挤型箱型材粘合而成。然后通过粘合剂或新颖的螺栓连接将它们连接到钢梁上,以形成复合系统。本文研究了两种不同的纤维(拉挤成型)配置:平板拉挤成型,其方向平行于或垂直于箱型。复合梁在四点弯曲条件下进行了测试,并评估了其抗弯刚度,承载能力以及FRP腹板-法兰夹心板内和剪切连接所提供的复合作用程度。所有的复合梁都表现出延性的载荷-挠度响应,复合梁的屈服始于FRP板的破坏。此外,粘合剂结合提供了完全的复合作用,但是具有一定间隔的新颖的螺栓连接提供了全部或部分的复合作用,这取决于FRP平板的拉挤构造。最后,提出了一种分析程序来评估复合梁的抗弯刚度和承载能力。在这项研究中还使用了有限元分析,与实验结果进行了很好的比较。

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