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Analysis of a Fire Damaged and FRP Laminate Strengthened Reinforced Concrete Bridge

机译:防火损坏和FRP层压材料加强钢筋混凝土桥梁分析

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Fire is a possible hazard on highway bridges which causes significant economic damage, and it is also one of the least investigated of all hazards. There is a lack of knowledge on the long term performance and structural integrity of fire damaged and fiber reinforced polymer (FRP) laminate retrofitted bridges. One such rare in-service bridge was selected for this study. The fire damaged cast-in-place non-prestressed girders were previously repaired with mortar and strengthened with FRP wrapping. The girders were instrumented with strain gages and displacement transducers, and a non-destructive live load test was carried out to evaluate the structural response. The results from the load testing were used to compare two identical girder spans with and without CFRP strengthening. A full-scale non-linear finite element model of the overall bridge superstructure was created, and the test results used to calibrate the model. The carbon (CFRP) strengthened girder exhibited similar stiffness compared to the undamaged girder as evidenced by almost equivalent mid-span deflection. The girder moment capacity decreased significantly due to fire damage, and the CFRP strengthening plus mortar repair was successful in restoring the moment capacity. The finite element model provided good correlation with load test results.
机译:火是在公路桥梁上可能的危险,这导致了严重的经济损失,它也是所有危害的最少调查之一。缺乏关于火灾损坏和纤维增强聚合物(FRP)层压桥的长期性能和结构完整性的知识。为本研究选择了一种如此罕见的内桥。防火损坏的铸造的非预应力梁先前使用砂浆进行修复,并通过FRP包装加强。梁用应变测量和位移传感器仪表,进行了非破坏性的活载试验以评估结构应答。负载测试的结果用于比较两种相同的梁跨度,无需CFRP强化。创建了全尺寸的非线性有限元模型,并使用了用于校准模型的测试结果。与未损坏的梁相比,碳(CFRP)强化梁表现出类似的刚度,如几乎相当于中间跨度偏转所证明的。由于火灾损坏,梁师力矩容量显着下降,CFRP加强加砂浆修复成功恢复了瞬间的能力。有限元模型提供了与负载测试结果的良好相关性。

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