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首页> 外文期刊>International Journal of Concrete Structures and Materials >Behavior of Laterally Damaged Prestressed Concrete Bridge Girders Repaired with CFRP Laminates Under Static and Fatigue Loading
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Behavior of Laterally Damaged Prestressed Concrete Bridge Girders Repaired with CFRP Laminates Under Static and Fatigue Loading

机译:CFRP叠合修复的预应力混凝土桥梁横向损伤静力和疲劳性能

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Abstract Many bridges are subject to lateral damage for their girders due to impact by over-height vehicles collision. In this study, the optimum configurations of carbon fiber reinforced polymers (CFRP) laminates were investigated to repair the laterally damaged prestressed concrete (PS) bridge girders. Experimental and analytical investigations were conducted to study the flexural behavior of 13 half-scale AASHTO type II PS girders under both static and fatigue loading. Lateral impact damage due to vehicle collision was simulated by sawing through the concrete of the bottom flange and slicing through one of the prestressing strands. The damaged concrete was repaired and CFRP systems (longitudinal soffit laminates and evenly spaced transverse U-wraps) were applied to restore the original flexural capacity and mitigate debonding of soffit CFRP longitudinal laminates. In addition to the static load tests for ten girders, three more girders were tested under fatigue loading cycles to investigate the behavior under simulated traffic conditions. Measurements of the applied load, the deflection at five different locations, strains along the cross-section height at mid-span, and multiple strains longitudinally along the bottom soffit were recorded. The study investigated and recommended the proper CFRP repair design in terms of the CFRP longitudinal layers and U-wrapping spacing to obtain flexural capacity improvement and desired failure modes for the repaired girders. Test results showed that with proper detailing, CFRP systems can be designed to restore the lost flexural capacity, sustain the fatigue load cycles, and maintain the desired failure mode.
机译:摘要许多桥梁由于超高车辆碰撞的冲击而对其梁造成侧向破坏。在这项研究中,研究了碳纤维增强聚合物(CFRP)层压板的最佳配置,以修复侧向破坏的预应力混凝土(PS)桥梁大梁。进行了实验和分析研究,以研究13个半尺寸AASHTO II型PS横梁在静载荷和疲劳载荷下的挠曲性能。通过锯切底部法兰的混凝土并切开一根预应力绞线,模拟了由于车辆碰撞而引起的横向冲击损坏。修复受损的混凝土,并应用CFRP系统(纵向拱腹层压板和均匀间隔的横向U形包装)以恢复原始挠曲能力并减轻拱腹CFRP纵向层压板的剥离。除了对十个大梁进行静载荷测试外,还在疲劳载荷循环下测试了另外三个大梁,以研究在模拟交通条件下的行为。记录施加载荷,五个不同位置的挠度,中跨截面高度上的应变以及沿底部拱腹沿纵向的多个应变的测量值。该研究针对CFRP的纵向层和U形包裹的间距,研究并建议了适当的CFRP修补设计,以提高弯曲能力,并获得所需的破坏模式。测试结果表明,通过适当的详细设计,CFRP系统可以设计为恢复损失的挠曲能力,维持疲劳载荷循环并维持所需的失效模式。

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