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Optimisation of a prestressed fibre-reinforced polymer shell for composite bridge deck

机译:复合桥甲板预应力纤维增强聚合物壳的优化

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摘要

This paper proposes a prestressed fibre-reinforced polymer (FRP) shell for composite bridge deck with FRP and concrete. Geometric parameters including cross-section shape, arch radius and number of arches were first optimised by the finite element (FE) method. A self-balancing prestressed basalt FRP (BFRP) shell system was proposed to resist the deformation under construction load and to enhance the integrated mechanical behaviour. The mechanical behaviour of the proposed FRP shell were examined under a simulated construction load. The stresses and deformations of the FRP shell were analysed during both prestress tensioning and construction loading. A static test was further conducted on the BFRP shell-concrete composited bridge deck to verify prestressing effect. The results show a corrugated cross-section with two arches on its lower flange further enhances the stiffness of FRP shell for a composite bridge deck. The prestressed FRP shell offsets the deformation under construction by the camber and exhibits more linear structural behaviour when compared to the non-prestressed BFRP shell. The stress monitored during loading indicates a superior integrated behaviour of the FRP shell and prestressing FRP laminates. Furthermore, the load-displacement relationship of prestressed composite bridge deck demonstrates a high loading capacity and small deflection at serviceability limit state.
机译:本文提出了一种用于复合桥甲板的预应力纤维增强聚合物(FRP)壳,具有FRP和混凝土。几何参数包括横截面形状,拱半径和拱形数量首先通过有限元(Fe)方法优化。提出了一种自平衡预应力玄武岩FRP(BFRP)壳体系统,以抵抗施工负荷下的变形,并提高综合的机械行为。在模拟结构负载下检查所提出的FRP壳的力学行为。在预应力张紧和建筑载荷期间分析了FRP壳的应力和变形。在BFRP壳 - 混凝土复合桥甲板上进一步进行了静态测试以验证预应力效果。结果表明,其下凸缘上有两个拱形的波纹横截面进一步增强了复合桥甲板的FRP壳的刚度。预应力的FRP壳体偏离弯曲的施工的变形,与非预应力BFRP壳相比,露角的施工变形并表现出更多的线性结构行为。负载期间监测的压力表示FRP壳和预应力FRP层压板的卓越的综合行为。此外,预应力复合桥甲板的负载 - 位移关系在可维护性限制状态下演示了高负载能力和小偏转。

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