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首页> 外文期刊>Composites >Positive and negative moment behaviours of hybrid members comprising cellular GFRP bridge decking epoxy-bonded to reinforced concrete beams
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Positive and negative moment behaviours of hybrid members comprising cellular GFRP bridge decking epoxy-bonded to reinforced concrete beams

机译:蜂窝结构GFRP桥面板环氧粘结到钢筋混凝土梁的混合构件的正负弯矩特性

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This paper reports tests to failure of hybrid members comprising cellular GFRP decking connected to RC beams via an epoxy adhesive. RC beams of low crack widths under service loads are useful with GFRP decking owing to the economy of and modest expertise needed to install such beams. Key novelties of this investigation include the RC beams (steel, FRP and prestressed concrete beams have been used previously) with the GFRP decking, use of the epoxy-bonded (so chemical, an alternative to mechanical) connection between the GFRP decking and the concrete beams, and study of the positive and negative moment responses (for application to continuous bridges) of this hybrid form. The test results show the adhesive to be a significant deck-to-beam shear connector under positive and negative moments. Whether the deck was a tensile or compressive top chord, the primary failure mode, which occurred at high loads, was delamination within the GFRP at the deck's flange-to-web joints, and was neither failure of the GFRP-adhesive interface nor of the adhesive between deck units. For the positive moment specimen there was also fracture of the concrete near the deck as observed for FRP-plated RC beams, despite the absence of flexural cracks from this near-deck concrete.
机译:本文报告了通过蜂窝式GFRP盖板通过环氧树脂粘合剂连接到RC梁的混合构件的失效测试。由于安装这种梁的经济性和适度的专业知识,在服务载荷下低裂缝宽度的RC梁可用于GFRP地板。这项研究的关键新颖之处包括:采用GFRP地板的RC梁(钢,FRP和预应力混凝土梁),在GFRP地板和混凝土之间使用环氧粘结(化学方法替代机械方法)连接梁,并研究这种混合形式的正和负弯矩响应(适用于连续桥)。测试结果表明,该粘合剂在正负力矩作用下是重要的桥对梁剪切连接器。无论甲板是拉力层还是压缩顶弦,在高载荷下发生的主要破坏模式都是在面板的法兰-腹板连接处的GFRP内分层,而不是GFRP-粘合剂界面的破坏或甲板单元之间的粘合剂。对于正力矩试样,尽管这种近甲板混凝土不存在挠曲裂缝,但对于FRP镀RC梁,在甲板附近混凝土也有断裂。

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