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Punching Shear Behavior of Two-Way Concrete Slabs Reinforced with Glass-Fiber-Reinforced Polymer (GFRP) Bars

机译:玻璃纤维增​​强聚合物(GFRP)钢筋对双向混凝土板的冲切剪切行为

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摘要

This study investigated the punching shear behavior of full-scale, two-way concrete slabs reinforced with glass fiber reinforced polymer (GFRP) bars, which are known as noncorrosive reinforcement. The relatively low modulus of elasticity of GFRP bars affects the large deflection of flexural members, however, applying these to two-way concrete slabs can compensate the weakness of the flexural stiffness due to an arching action with supporting girders. The test results demonstrated that the two-way concrete slabs with GFRP bars satisfied the allowable deflection and crack width under the service load specified by the design specification even in the state of the minimum reinforcement ratio. Previous predicting equations and design equations largely overestimated the measured punching shear strength when the slab was supported by reinforced concrete (RC) girders. The strength difference can be explained by the fact that the flexural behavior of the supporting RC beam girders reduces the punching shear strength because of the additional deflection of RC beam girders. Therefore, for more realistic estimations of the punching shear strength of two-way concrete slabs with GFRP bars, the boundary conditions of the concrete slabs should be carefully considered. This is because the stiffness degradation of supporting RC beam girders may influence the punching shear strength.
机译:这项研究调查了用玻璃纤维增​​强聚合物(GFRP)棒增强的全尺寸双向混凝土板的冲切剪切性能,这被称为无腐蚀增强。 GFRP筋的相对较低的弹性模量会影响挠曲构件的大挠度,但是,将其应用于双向混凝土板可以补偿由于支撑梁的拱形作用而引起的挠曲刚度的弱点。试验结果表明,带有GFRP筋的双向混凝土板即使在最小配筋率的状态下,在设计规范规定的使用载荷下也能满足允许的挠度和裂缝宽度。当平板由钢筋混凝土(RC)大梁支撑时,先前的预测方程和设计方程会大大高估测得的冲压抗剪强度。可以通过以下事实解释强度差异:支撑RC梁大梁的挠曲性能会降低冲切剪切强度,因为RC梁大梁会产生额外的挠度。因此,为了更实际地估计带有GFRP筋的双向混凝土板的冲切抗剪强度,应仔细考虑混凝土板的边界条件。这是因为支撑RC梁的刚度降低可能会影响冲压抗剪强度。

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