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Behavior of RC members strengthened in shear with EB FRP: Assessment of models and FE simulation approaches

机译:用EB FRP加强钢筋混凝土杆件的剪切性能:模型评估和有限元模拟方法

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摘要

Numerical analyses are performed with the ADINA finite element (FE) package to predict the behavior of beams shear-strengthened using externally bonded (EB) fiber reinforced polymers (FRPs). Nonlinear material behavior of the plain concrete, steel reinforcing bars, FRP composites and FRP/concrete interface are simulated with appropriate constitutive models. In the FE analysis, the use of truss elements versus shell elements to simulate the behavior of the FRP composites is evaluated. The influence of three types of interface element to represent the FRP/concrete interfacial behavior is examined. These elements are spring elements, discrete truss elements and continuous truss elements. The appropriate interface element is selected on the basis of the best fit of numerical predictions obtained for a predetermined set of experimental data. In order to investigate the influence of including horizontal interface elements, the interfacial response is provided parallel and perpendicular to the fiber orientation to examine the horizontal component of the principal diagonal-tension stresses. It is shown that the approach identified to represent the FRPs and the FRP/concrete interfacial behavior can significantly influence the numerical predictions of FRP shear-strengthened beams.
机译:使用ADINA有限元(FE)软件包进行数值分析,以预测使用外部粘合(EB)纤维增强聚合物(FRP)进行剪切强化的梁的行为。用适当的本构模型模拟了素混凝土、钢筋、FRP复合材料和FRP/混凝土界面的非线性材料行为。在有限元分析中,评估了使用桁架单元与壳单元来模拟FRP复合材料的行为。研究了三种界面单元对表示FRP/混凝土界面行为的影响。这些单元是弹簧单元、离散桁架单元和连续桁架单元。根据为一组预定的实验数据获得的数值预测的最佳拟合来选择适当的界面元素。为了研究包括水平界面单元的影响,提供了平行于纤维取向并垂直于纤维取向的界面响应,以检查主要对角线拉应力的水平分量。结果表明,表示FRPs和FRP/混凝土界面行为的方法可以显著影响FRP剪切强化梁的数值预测。

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