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A New Punching Shear Equation for Two-Way Concrete Slabs Reinforced with FRP Bars

机译:用FRP棒加固双向混凝土板的新冲压剪切方程

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Recently, there has been a rapid increase in using the non-corrodible fiber-reinforced polymers (FRP) reinforcing bars as alternative reinforcements for concrete structures especially those in harsh environments. The elastic stiffness, ultimate strength, and bond characteristics of FRP reinforcing bars are quite different from those of steel, which affect the shear capacity. The recently published FRP design codes and guidelines include equations forsheardesign of one-way flexural members. However, very little work was done to investigate the punching shear behavior of two-way slabs reinforced with FRP bars. The current design provisions for shear in two-way slabs are based on testing carried out on steel reinforced slabs. This study presents a new model to predict shear capacity of two-way concrete slabs that were developed based on extensive experimental work. The accuracy of this prediction model was evaluated against the existing test data. Compared to the available design models, the proposed shear model seems to have very good agreement with test results with better predictions for both FRP and steel-reinforced concrete two-way slabs.
机译:最近,使用不可腐蚀性纤维增强聚合物(FRP)加强棒作为混凝土结构的替代增强件,尤其是恶劣环境中的替代增强剂的快速增加。 FRP加强杆的弹性刚度,极限强度和粘结特性与影响剪切能力的钢的强度。最近发表的FRP设计代码和指南包括围栏的等式的单向弯曲成员。然而,已经完成了很少的工作来研究用FRP条加强的双向板坯的冲孔行为。双向板坯剪切的当前设计规定是基于钢筋增强板上进行的测试。本研究提出了一种新模型,以预测基于广泛的实验工作开发的双向混凝土板的剪切能力。对现有测试数据进行评估该预测模型的准确性。与可用的设计模型相比,所提出的剪切模型似乎与测试结果非常好,具有更好的FRP和钢筋混凝土双向板坯的预测。

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