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Modeling of RC shear walls strengthened by FRP composites

机译:FRP复合材料加固RC剪力墙的建模

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RC shear walls are considered one of the main lateral resisting members in buildings. In recent years, FRP has been widely utilized in order to strengthen and retrofit concrete structures. A number of experimental studies used CFRP sheets as an external bracing system for retrofitting of RC shear walls. It has been found that the common mode of failure is the debonding of the CFRP-concrete adhesive material. In this study, behavior of RC shear wall was investigated with three different micro models. The analysis included 2D model using plane stress element, 3D model using shell element and 3D model using solid element. To allow for the debonding mode of failure, the adhesive layer was modeled using cohesive surface-to-surface interaction model at 3D analysis model and node-to-node interaction method using Cartesian elastic-plastic connector element at 2D analysis model. The FE model results are validated comparing the experimental results in the literature. It is shown that the proposed FE model can predict the modes of failure due to debonding of CFRP and behavior of CFRP strengthened RC shear wall reasonably well. Additionally, using 2D plane stress model, many parameters on the behavior of the cohesive surfaces are investigated such as fracture energy, interfacial shear stress, partial bonding, proposed CFRP anchor location and using different bracing of CFRP strips. Using two anchors near end of each diagonal CFRP strips delay the end debonding and increase the ductility for RC shear walls.
机译:RC剪力墙被认为是建筑物中的主要侧向抗力构件之一。近年来,为了增强和改造混凝土结构,玻璃钢被广泛使用。许多实验研究都使用CFRP板作为外部支撑系统来翻新RC剪力墙。已经发现,常见的失效模式是CFRP-混凝土粘合剂材料的脱粘。在这项研究中,RC剪力墙的性能用三种不同的微观模型进行了研究。分析包括使用平面应力元素的2D模型,使用壳单元的3D模型和使用实体元素的3D模型。为了考虑失败的脱粘模式,在3D分析模型中使用内聚的表面间相互作用模型在2D分析模型上使用笛卡尔弹塑性连接器单元对节点间的相互作用方法对粘合层进行建模。比较了文献中的实验结果,验证了有限元模型的结果。结果表明,所提出的有限元模型能够较好地预测由于CFRP脱粘和CFRP加固的RC剪力墙的破坏模式。此外,使用二维平面应力模型,研究了粘结表面行为的许多参数,例如断裂能,界面剪切应力,局部粘结,建议的CFRP锚固位置以及使用不同的CFRP支撑。在每个对角CFRP条的末端附近使用两个锚钉会延迟末端的脱胶并增加RC剪力墙的延展性。

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