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Numerical simulation of concrete beams reinforced with composite GFRP-Steel bars under three points bending

机译:三点弯曲下玻璃纤维增​​强复合筋混凝土梁的数值模拟

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摘要

Fiber reinforced polymer (FRP) applications in the structural engineering field include concrete-FRP composite systems, where FRP components are either attached to or embedded into concrete structures to improve their structural performance. This paper presents the results of an analytical study conducted using finite element model (FEM) to simulate the behavior of three-points load beam reinforced with GFRP and/or steel bars. To calibrate the FEM, a small-scale experimental program was carried out using six reinforced concrete beams with 200x200 mm cross section and 1000 mm length cast and tested under three point bending load. The six beams were divided into three groups, each group contained two beams. The first group was a reference beams which was cast without any reinforcement, the second group concrete beams was reinforced using GFRP, and the third group concrete beams was reinforced with steel bars. Nonlinear finite element simulations were executed using ANSYS software package. The difference between the theoretical and experimental results of beams vertical deflection and beams crack shapes were within acceptable degree of accuracy. Parametric study using the calibrated model was carried out to evaluate two parameters (1) effect of number and position of longitudinal main bars on beam behavior; (2) performance of concrete beam with composite longitudinal reinforcement steel and GFRP bars.
机译:结构工程领域中的纤维增强聚合物(FRP)应用包括混凝土-FRP复合系统,其中FRP组件可以附着或嵌入混凝土结构中以改善其结构性能。本文介绍了使用有限元模型(FEM)进行分析研究的结果,以模拟采用GFRP和/或钢筋的三点荷载梁的性能。为了校准FEM,使用了六个截面为200x200 mm,长度为1000 mm的钢筋混凝土梁进行了小型试验程序,并在三点弯曲载荷下进行了测试。六个光束分为三组,每组包含两个光束。第一组是没有任何钢筋浇注的参考梁,第二组是使用GFRP加固的混凝土梁,第三组是用钢筋加固的混凝土梁。非线性有限元仿真是使用ANSYS软件包执行的。梁的竖向挠度和裂缝形状的理论和实验结果之间的差异在可接受的精度范围内。使用校准后的模型进行参数研究,以评估两个参数:(1)纵向主筋的数量和位置对梁行为的影响; (2)复合纵向钢筋和GFRP筋混凝土梁的性能。

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