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Time-variant flexural reliability of RC beams with externally bonded CFRP under combined fatigue-corrosion actions

机译:组合CFRP的体外粘结CFRP RC梁的时变挠度可靠度。

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Time-variant reliability analysis of RC highway bridges strengthened with carbon fibre reinforced polymer CFRP laminates under four possible competing damage modes (concrete crushing, steel rupture after yielding, CFRP rupture and FRP plate debonding) and three degradation factors is analyzed in terms of reliability index β using FORM. The first degradation factor is chloride-attack corrosion which induces reduction in steel area and concrete cover cracking at characteristic key times (corrosion initiation, severe surface cover cracking). The second degradation factor considered is fatigue which leads to damage in concrete and steel rebar. Interaction between corrosion and fatigue crack growth in steel reinforcing bars is implemented. The third degradation phenomenon is the CFRP properties deterioration due to aging. Considering these three degradation factors, the time-dependent flexural reliability profile of a typical simple 15 m-span intermediate girder of a RC highway bridge is constructed under various traffic volumes and under different corrosion environments. The bridge design options follow AASHTO-LRFD specifications. Results of the study have shown that the reliability is very sensitive to factors governing the corrosion. Concrete damage due to fatigue slightly affects reliability profile of non-strengthened section, while service life after strengthening is strongly related to fatigue damage in concrete.
机译:碳纤维增强聚合物CFRP层压板加固的RC公路桥梁在四种可能的竞争破坏模式(混凝土压碎,屈服后钢断裂,CFRP断裂和FRP板脱粘)下的时变可靠性分析,并根据可靠性指标分析了三个退化因素β使用FORM。第一个降解因素是氯离子腐蚀,这会导致在关键的关键时间(腐蚀开始,严重的表面覆盖层开裂)导致钢材面积减少和混凝土覆盖层开裂。考虑的第二个退化因素是疲劳,这会导致混凝土和钢筋损坏。在钢筋中实现了腐蚀与疲劳裂纹扩展之间的相互作用。第三种降解现象是由于老化导致的CFRP性能下降。考虑到这三个退化因素,在各种交通流量和不同腐蚀环境下,构建了一个典型的15 m跨距的RC公路桥梁典型的简单中跨梁随时间变化的挠曲可靠性曲线。桥接器设计选项遵循AASHTO-LRFD规范。研究结果表明,可靠性对控制腐蚀的因素非常敏感。疲劳引起的混凝土损伤会稍微影响非加强型材的可靠性,而加固后的使用寿命则与混凝土的疲劳损伤密切相关。

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