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Modified strip model for punching-shear strength of FRP-reinforced concrete edge-column slab connections

机译:用于FRP钢筋混凝土边缘柱板连接冲压剪切强度的改进条模型

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The use of fiber-reinforced polymer (FRP) bars as internal reinforcement for concrete structures in aggressive environments has emerged as an innovative solution to eliminate corrosion problems. Glass FRP (GFRP) reinforcing bars have recently gained wide acceptance as a viable construction material for sustainable new constructions due to their costing less than other FRP types. This paper reports the WA results for full-sized edge-column slab connections (ECS -connections) reinforced with sand coated GFRP bars. These connections were cast using normal-strength concrete (NSC) and high strength concrete (HSC). The effect of concrete strength (NSC and HSC) and moment-to-shear force ratio (M/V) (300 mm, 600 mm) on the performance of the tested connections were examined. In addition, a new mechanical model, called Modified Strip Model, is presented for punching-shear strength predictions of FRP reinforced concrete (RC) ECS -connections. The WA results reveal that the use of HSC directly augmented the punching-shear strength and improved the load-deflection response of the tested connections, However, Increasing the M/V ratio produced significant shear stresses, thus decreasing the punching-shear strength for the NSC and HSC connections, respectively. The mechanical model presented herein takes into account all possible mechanisms of loads transfer in FRP-RC ECS-connections. Hence, a complete shear-moment (V-M) interaction diagram can be plotted to predict the punching strength of such connections. Moreover, the model revealed higher accuracy and narrower scatter for punching-shear strength predictions compared to other available equations in FRP design codes and guides. The EN 1992-1-1-05 punching-shear equation was also examined for FRP-RC ECS-connections and adapted to consider the tensile properties of the FRP bars instead of steel.
机译:使用纤维增强聚合物(FRP)棒作为侵蚀性环境中混凝土结构的内部增强,已成为消除腐蚀问题的创新解决方案。玻璃FRP(GFRP)钢筋最近由于其耗费量低于其他FRP类型而获得可持续新建筑的可行建筑材料,因此玻璃FRP(GFRP)最近验收。本文报告了用砂涂层GFRP棒加固的全尺寸边缘柱板连接(ECS-Connections)的WA结果。使用正常强度混凝土(NSC)和高强度混凝土(HSC)铸造这些连接。检查了混凝土强度(NSC和HSC)和时刻到剪切力比(M / V)(300mm,600mm)对测试连接性能的影响。此外,提供了一种新的机械模型,称为改性条带模型,用于FRP钢筋混凝土(RC)ECS-Connections的冲压剪切强度预测。 WA结果表明,使用HSC直接增强冲压剪切强度并改善了测试连接的载荷偏转响应,然而,增加M / V比产生了显着的剪切应力,从而降低了用于剪切强度分别为NSC和HSC连接。这里提出的机械模型考虑了FRP-RC ECS连接中的所有可能的负载转移机制。因此,可以绘制完整的剪切力矩(V-M)交互图以预测这种连接的冲压强度。此外,与FRP设计码和引导件中的其他可用方程相比,该模型揭示了冲压强度预测的更高的精度和更窄的散射。还检查了EN 1992-1-05冲压剪切方程,用于FRP-RC ECS连接,并适于考虑FRP棒代替钢的拉伸性能。

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