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Durability of Gerber Saddles in RC Bridges: Analyses and Applications (Musmeci Bridge, Italy)

机译:RC桥梁Gerber马鞍的耐久性:分析和应用(Musmeci Bridge,意大利)

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Guaranteeing adequate safety levels in critical infrastructures such as bridges is essential to modern societies and their vital services. Bridges with reinforced concrete structures are subject to deterioration, especially due to corrosion effects. Gerber saddles are among the key components of bridges which are especially exposed to environmental actions due to their position and reduced possibility of inspection. In this paper, a framework for the durability analysis of these components is proposed, considering the simultaneous presence of permanent loads and environmental actions under the form of chloride ions. Nonlinear numerical simulations adopting the finite element code ATENA are performed, accounting for chloride ingress analyses. The presence of cracks (due to applied loads and/or design/construction defects) which may speed-up corrosion propagation, steel reinforcement loss, cracking and spalling, and their effects on the load-bearing capacity is considered. This framework has been applied to the Gerber saddles of a prominent reinforced concrete (RC) bridge, namely the Musmeci bridge in Potenza, Italy. Durability analyses made it possible to evaluate the saddles’ strength capacity (i) at the time of construction, (ii) after forty-five years since the construction, and (iii) at an extended time of fifty years. The results show that corrosion can influence both the ultimate load capacity and the collapse mechanism.
机译:保证桥梁等关键基础设施的充分安全水平对现代社会及其重要服务至关重要。具有钢筋混凝土结构的桥梁受到劣化,特别是由于腐蚀效应。格柏鞍座是由于其位置和检验可能性减少而特别暴露于环境行动的桥梁的关键部件之一。本文提出了一种用于这些组分的耐久性分析的框架,考虑到氯离子形式的永久性负荷和环境动作的同时存在。采用有限元码酰亚人的非线性数值模拟,占氯化物入口分析。考虑了可能加速腐蚀传播,钢筋损耗,开裂和剥落的裂缝(由于施加的载荷和/或设计/构建缺陷)以及它们对承载能力的影响。该框架已应用于一个突出的钢筋混凝土(RC)桥的格柏鞍座,即意大利Potenza的Musmeci桥梁。耐久性分析使得在建设时(ii)在建筑的四十五年后(ii)在延长时间五十年后,可以评估鞍座的强度能力(i)。结果表明,腐蚀可以影响最终负载能力和折叠机制。

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