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Three dimensional nonlinear model of beam tests for bond of near-surface mounted FRP rods in concrete

机译:混凝土近表面安装FRP杆粘结的梁试验三维非线性模型

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摘要

The use of near-surface mounted FRP reinforcement in reinforced concrete structures has seen a considerable increase in recent years as a strengthening method. Beam pull-out tests for near-surface reinforcement allow obtaining the local bond-slip behavior of a bonded joint. The current paper deals with the three-dimensional modeling of this kind of test with the purpose of suitably characterizing the mechanics of the bond between FRP rods and concrete. Different alternatives to represent the FRP bar - concrete interface have been evaluated. Furthermore, to do this modeling, a PID controller has also been designed to conduct the numerical tests correctly in order to properly capture the softening branch of the load-slip behavior. The numerical FE simulations were compared with previously published experimental measurements. Load-slip predictions compare well with the corresponding experimental data. The proposed model is also able to predict the failure mode at the FRP-concrete interface. Some parametric studies have also been carried out.
机译:近几年来,在加固混凝土结构中使用近表面安装的FRP增强材料作为一种增强方法已获得了可观的增长。用于近表面加固的梁拉力测试可以获取粘结接头的局部粘结-滑移行为。当前的论文涉及这种测试的三维建模,目的是适当地表征FRP杆和混凝土之间的粘结机理。已经评估了代表FRP钢筋的不同替代方案-具体界面。此外,为了进行此建模,还设计了PID控制器以正确进行数值测试,以便正确捕获负载滑移行为的软化分支。数值有限元模拟与以前发表的实验测量结果进行了比较。负载滑移预测与相应的实验数据可以很好地比较。所提出的模型还能够预测FRP混凝土界面处的故障模式。还进行了一些参数研究。

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