Enhancement of punching shear behavior of reinforced concrete flat slabs using GFRP grating

Ahmed A. Mahmoud, Haitham Mostafa, Tarek Mostafa, Ahmed N. Khater
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Abstract

The literature review showed insufficient relevant research on the application of Glass-Fiber-Reinforced-Polymers (GFRP) gratings in the structural elements, while GFRP bars, laminate, sheets, and strips, have been extensively explored. This research aims to present a proposal for a new reinforcing system using GFRP gratings to improve the punching shear resistance of RC flat slabs. Results of seven specimens tested experimentally under vertical static loading are displayed, taking into account the influence of the gratings variables. Test results revealed an improvement in the ultimate load ranging between 9.03% and 27.67% for the specimens strengthened by the proposed GFRP grating system. A Nonlinear Finite Element Analysis (NLFEA) was carried out using the ANSYS program with correlational evaluation using load-deflection response and cracking pattern, which resulted in a good convergence of numerical simulations and experimental performance results ranging from 1.0% to 8.0%. Key parameters, namely the concrete compressive strength, steel reinforcement yield strength, main steel reinforcement ratio, secondary steel reinforcement ratio, column dimensions, slab thickness, concrete cover, and GFRP gratings characteristics, were investigated through a parametric study adopting NLFEA by the ANSYS program, where the output results were compared to the recent code provisions.
使用玻璃纤维增强塑料格栅改善钢筋混凝土平板的冲剪性能
文献综述显示,关于玻璃纤维增强聚合物(GFRP)光栅在结构元件中应用的相关研究不足,而玻璃纤维增强聚合物(GFRP)棒材、层压板、板材和条材已被广泛探讨。本研究旨在提出一种使用 GFRP 光栅的新型加固系统,以提高钢筋混凝土平板的抗冲剪性能。考虑到钢格板变量的影响,本文展示了在垂直静态荷载下对七个试样进行实验测试的结果。测试结果表明,采用拟议的 GFRP 光栅系统加固的试样的极限荷载提高了 9.03% 至 27.67%。利用 ANSYS 程序进行了非线性有限元分析(NLFEA),并利用载荷-挠度响应和开裂模式进行了相关评估,结果表明数值模拟和实验结果收敛性良好,收敛范围在 1.0% 到 8.0% 之间。通过 ANSYS 程序采用 NLFEA 对混凝土抗压强度、钢筋屈服强度、主钢筋配筋率、次钢筋配筋率、柱尺寸、板厚度、混凝土覆盖层和 GFRP 光栅特性等关键参数进行了参数研究,并将输出结果与最新规范条款进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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