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FE Modeling of CFRP-Repaired RC Beams Subjected to Fatigue Loading

机译:疲劳荷载作用下CFRP修复RC梁的有限元建模

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摘要

A constitutive model is developed for fiber-reinforced polymer (FRP)-to-concrete bond for fatigue loading. The model is verified against available test data with a framework developed for further calibration as new data becomes available. The formulation is incorporated into a finite-element program and the fatigue behavior of FRP-repaired reinforced concrete (RC) beams is analyzed. Comparing the finite-element model results with test data shows that the model is capable of accurately predicting the overall cyclic fatigue loading response of RC members strengthened with FRP composites. The model is also able to capture the change in the peak deflection, the FRP plate strain development and distribution with increasing load cycles, and the number of load cycles to failure. The need for more tests on FRP-to-concrete bonded interfaces subjected to fatigue loading is identified, as is the need to measure key modeling parameters from such tests.
机译:建立了本构模型,用于纤维增强聚合物(FRP)到混凝土的粘结,以减轻疲劳负荷。该模型针对可用的测试数据进行了验证,并开发了一个框架,用于在新数据可用时进行进一步的校准。将该公式纳入有限元程序,并分析了FRP修复的钢筋混凝土(RC)梁的疲劳性能。将有限元模型结果与测试数据进行比较表明,该模型能够准确预测FRP复合材料加固的RC构件的整体循环疲劳荷载响应。该模型还能够捕获峰值挠度的变化,FRP板应变随载荷循环的增加而发展和分布,以及失效的载荷循环数。确定了需要对承受疲劳载荷的FRP到混凝土粘结界面进行更多测试,以及从此类测试中测量关键建模参数的需求。

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