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Horizontal capacity of single-span masonry bridges with intrados FRCM strengthening

机译:单跨砖石桥与墨西哥大楼加固水平容量

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摘要

The strengthening of masonry arch bridges, which account for a significant portion of the railway and road bridges in the world's infrastructure network, is a pressing need for the operators of such networks, and even more so in the seismic areas.As any interruptions to road and especially rail traffic are particularly costly, and consequently the most suitable solution involves the design of a strengthening system applied to the intrados of the masonry arch bridge. However, in these circumstances a more compatible and reversible solution compared to traditional strengthening techniques or FRP (Fiber Reinforced Polymer) systems involves the use of FRCM (Fiber Reinforced Cementitious Matrix).This work thus examines the effectiveness of FRCM strengthening on the intrados of masonry arch bridges, taking into account the actual geometric relationships that characterise the arches of bridges and considering the effect of Coulomb friction. The results obtained using lower bound limit analysis highlight the optimal conditions for the use of this strengthening, and the situations in which, due to the actual geometry of the bridges and the friction coefficient value, the use of this strengthening system would not be recommended.
机译:加强砌体拱桥,占世界基础设施网络中铁路和道路桥梁的重要部分,这是对这种网络的运营商的压迫需求,甚至在地震区域中更为迫切。道路的任何中断特别是轨道交通尤其昂贵,因此最合适的解决方案涉及应用于砌体拱桥内部的强化系统。然而,在这种情况下,与传统的强化技术或FRP(纤维增强聚合物)系统相比,更具兼容的和可逆的解决方案涉及FRCM(纤维增强水泥基质)的使用。这项工作,从而检查了FRCM加强砌体内部的有效性拱桥,考虑到桥梁拱门并考虑库仑摩擦效果的实际几何关系。使用下限限制分析获得的结果突出了使用这种强化的最佳条件,以及由于桥的实际几何形状和摩擦系数值,不推荐使用这种强化系统。

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