Performance of Reinforced Concrete Flat Slabs Having GFRP Gratings

Ahmed Mahmoud, Haitham Mostafa, Tarek Mostafa, Ahmed Khater
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Abstract

A thorough study of the literature indicated that there is not much relevant research on the application of GFRP gratings. Otherwise, extensive study has been done on FRP bars, laminates, sheets, strips, and rods. This study proposes a novel approach to improve the punching shear resistance of flat slab column connections by inserting GFRP gratings across the slab thickness. The results of seven specimens tested under vertical static loading are presented, considering the influence of the grating’s characteristics. All specimens were tested as simply supported slabs under one point of static loading. Experimental results, including crack patterns, slab deflection, concrete compressive strain, tensile steel strain, GFRP grating strain, and failure load, were recorded using extensive electric instrumentation. Test results revealed an enhancement in the failure load ranging between 9.03% and 27.67% for the specimens provided with the GFRP grating. In addition, a nonlinear finite element numerical model analysis was carried out using the ANSYS 15 program. Correlational studies based on the load-deflection response and crack patterns were utilized, resulting in a good agreement between numerical simulations and experimental results with differences ranging from 1.0% to 8.0%.
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带有 GFRP 栅格的钢筋混凝土平板的性能
对文献的深入研究表明,关于玻璃纤维增强塑料光栅应用的相关研究并不多。除此之外,人们对玻璃钢条、层压板、板材、带材和棒材进行了广泛的研究。本研究提出了一种新方法,通过在板厚上插入玻璃纤维增强塑料光栅来提高平板柱连接的抗冲剪性能。考虑到光栅特性的影响,本研究介绍了在垂直静态荷载下测试的七个试样的结果。所有试样都是在单点静态加载下作为简单支撑板进行测试的。试验结果,包括裂缝模式、板挠度、混凝土压缩应变、钢拉伸应变、GFRP 格栅应变和破坏荷载,均通过大量电动仪器记录下来。试验结果表明,带有 GFRP 格栅的试样的破坏荷载增加了 9.03% 至 27.67%。此外,还使用 ANSYS 15 程序进行了非线性有限元数值模型分析。根据载荷-挠度响应和裂纹模式进行了相关研究,结果显示数值模拟和实验结果非常吻合,差异在 1.0% 到 8.0% 之间。
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