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Strengthening of masonry-unreinforced concrete railway bridges with PBO-FRCM materials

机译:用PBO-FRCM材料加固砖石混凝土钢筋铁路桥梁

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摘要

Many existing railway bridges have been designed for live loads significantly lower than those produced by the present day train traffic. The most part of them are masonry arch bridges whose load carrying capacity needs to be verified with respect to the current traffic loads in order to define the necessary strengthening interventions. In the last two decades innovative strengthening techniques based on the use of polymeric and, more recently, cementitious fiber reinforced composite materials have been adopted. The design criteria adopted for the strengthening intervention with a poliparafenilenbenzobis-oxazole (PBO) fiber reinforced cementitious matrix (FRCM) material of a railway bridge on the ancient Rome-Naples railway line are presented in the paper. The structure is constituted by unreinforced concrete barrel vaults supported by masonry piers. The bridge is analyzed both in its original and in its strengthened configuration following the approach of the collapse mechanisms. This approach allows to capture the strengthening effect of the PBO-FRCM material in terms of modification of the collapse mechanism and increase of the load collapse multiplier. The analyses evidence a lack of load carrying capacity of about 40% with respect to that required by current codes. The proposed strengthening intervention allows to overcome this lack.
机译:已经设计了许多现有的铁路桥梁,以承受比目前火车交通产生的荷载低得多的荷载。其中大部分是砌体拱桥,需要针对当前的交通荷载来验证其承载能力,以定义必要的加强措施。在过去的二十年中,已经采用了基于聚合物以及最近水泥纤维增强复合材料的创新加固技术。提出了在古罗马-那不勒斯铁路线上的铁路桥梁中采用对苯二酚-苯并双恶唑(PBO)纤维增强水泥基(FRCM)材料进行干预的设计标准。该结构由砌体墩支撑的未加固混凝土桶形拱顶构成。按照倒塌机制的方法,对桥梁的原始结构和加强结构进行了分析。这种方法可以捕获PBO-FRCM材料在破坏机理的修改和载荷破坏倍数增加方面的增强效果。分析表明,相对于当前法规要求,其承载能力不足约40%。建议的加强干预措施可以克服​​这一不足。

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