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Time-variant redundancy and failure times of deteriorating concrete structures considering multiple limit states

机译:考虑多个限制状态的混凝土结构恶化的时变冗余和失效时

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摘要

Structural redundancy and load redistribution capacity are desirable features to ensure suitable system performance under accidental actions and extreme events. For deteriorating structures, these features must be evaluated over time to account for the modification of the redistribution mechanisms due to damage processes. In particular, the identification of the local failure modes and prediction of their occurrence in time is necessary in order to maintain a suitable level of system performance and to avoid collapse. In fact, repairable local failures can be considered as a warning of damage propagation and possible occurrence of more severe and not repairable failures. In this paper, failure loads and failure times of concrete structures exposed to corrosion are investigated and life-cycle performance indicators, related to redundancy and elapsed times between sequential failures, are proposed. The effects of the damage process on the structural performance are evaluated based on a methodology for life-cycle assessment of concrete structures exposed to diffusive attack from environmental aggressive agents. The uncertainties involved are taken into account. The proposed approach is illustrated using two applicative examples: a reinforced concrete frame building and a reinforced concrete bridge deck under corrosion. The results demonstrate that both failure loads and failure times can provide relevant information to plan maintenance actions and repair interventions on deteriorating structures in order to ensure suitable levels of structural performance and functionality during their entire life-cycle.
机译:结构冗余和负载再分配容量是理想的功能,以确保在意外行动和极端事件下的合适的系统性能。对于劣化结构,必须随着时间的推移评估这些特征,以解释由于损坏过程引起的再分配机制。特别地,需要识别局部失效模式和预测它们及时的发生,以保持合适的系统性能水平并避免崩溃。实际上,可修复的本地失败可以被视为损坏传播的警告,并且可能发生更严重的损坏和不可修复的失败。在本文中,研究了暴露于腐蚀的混凝土结构的故障载荷和故障时间,并提出了与顺序故障之间的冗余和经过时间相关的生命周期性能指标。根据暴露于环境侵袭性药物的扩散攻击的混凝土结构的生命周期评估的方法,评估损伤过程对结构性能的影响。所涉及的不确定性被考虑在内。采用两种适用例说明所提出的方法:钢筋混凝土框架建筑和钢筋混凝土桥甲板。结果表明,失效负载和故障时间都可以提供相关信息,以规划在恶化结构上的维护行动和修理干预措施,以确保在整个生命周期期间的结构性性能和功能水平。

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