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Finite Element Modeling of GFRP-Reinforced Concrete Interior Slab-Column Connections Subjected to Moment Transfer

机译:GFRP增强混凝土内部板-柱连接受弯矩传递的有限元建模

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A finite element model (FEM) was constructed using specialized three-dimensional (3D) software to investigate the punching shear behavior of interior slab-column connections subjected to a moment-to-shear ratio of 0.15 m. The FEM was then verified against the experimental results of full-scale interior slab-column connections reinforced with glass fiber reinforcement polymer (GFRP) bars previously tested by the authors. The FEM results showed that the constructed model was able to predict the behavior of the slabs with reasonable accuracy. Afterward, the verified model was used to conduct a parametric study to investigate the effects of reinforcement ratio, perimeter-to-depth ratio, and column aspect ratio on the punching shear behavior of such connections. The test results showed that increasing the tested parameters enhanced the overall behavior of the connections in terms of decreasing deflections and reinforcement strain and increasing the ultimate capacity. In addition, the obtained punching shear stresses of the connections were compared to the predictions of the Canadian standard and the American guideline for FRP-reinforced concrete structures.
机译:使用专门的三维(3D)软件构建了一个有限元模型(FEM),以研究在0.15 m的弯矩与剪力比作用下内部板-柱连接的冲剪行为。然后根据作者先前测试过的用玻璃纤维增​​强聚合物(GFRP)筋增强的全尺寸内部平板-柱连接的实验结果验证了FEM。有限元结果表明,所建立的模型能够以合理的精度预测板坯的行为。之后,使用验证的模型进行参数研究,以研究增强比,周长/深度比和立柱纵横比对此类连接的冲剪性能的影响。测试结果表明,增加测试参数可以提高连接的整体性能,从而减少挠曲和增强应变并提高极限承载力。此外,将获得的连接处的冲切剪切应力与加拿大标准和美国FRP增强混凝土结构准则的预测值进行了比较。

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