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Evaluation through a finite element simulation of the performance of FRP anchors for externally bonded reinforcements

机译:通过用于外部粘合增强件的FRP锚固性能的有限元模拟来评估

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A large number of parameters are involved in the behaviour of fibre reinforced polymers (FRP) anchors, which make it difficult to estimate the anchors' contribution to the anchored joint through simple expressions that fit sufficiently well to the real behaviour. Previous research has shown that the installation process, material properties and anchor-to-reinforcement arrangement have influence on the maximum load, the load-displacement relationship, and the failure mode of the FRP-to-concrete anchored joints. Based on these observations, an empirical model to estimate carbon fibre reinforced polymers (CFRP) anchored joint's strength was proposed. As the expressions were obtained from experimental results, a finite element simulation was performed to numerically assess the parameters that were identified as most influential in the behaviour of CFRP anchored joints. This paper presents the FE model proposed and its comparison with the experimental results.
机译:大量参数涉及纤维增强聚合物(FRP)锚的行为,这使得难以通过对真实行为充分适应的简单表达来估计锚点对锚定关节的贡献。 以前的研究表明,安装过程,材料特性和锚固件布置对FRP到混凝土锚固接头的最大负荷,负载 - 位移关系和故障模式影响了对载体的最大负荷。 基于这些观察结果,提出了一种估计碳纤维增强聚合物(CFRP)锚定关节强度的实证模型。 随着表达式从实验结果获得,进行有限元模拟以在数值上评估在CFRP锚定关节的行为中被识别出最有影响力的参数。 本文介绍了提出的FE模型及其与实验结果的比较。

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