Punching Shear Resistance of High Strength GFRP Reinforced Concrete Flat Slabs

Ibrahim A. Sarhan, A. S. Mahmoud, Mohamed A. Hussian
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Abstract

This study program has been arranged to test the behavior of punching shear for concrete slabs reinforced by an embedded glass fiber reinforced polymer (GFRP) reinforcements. However, the shear resistance of concrete members in general and especially punching shear of two-way RC slabs, reinforced by GFRP bars has not yet been fully investigated. Seven decades ago, many researches have been carried out on punching shear resistance of slabs reinforced by conventional steel and several design methods were created. However, these methods can be not easily applied to FRP-reinforced concrete slabs due to the difference in mechanical properties between (FRP) and steel reinforcement. sixteen specimens are to be cast in lab within two categories of reinforcements such as GFRP and equivalent steel reinforcements. In addition, based on experimental data obtained from the author’s study and ACI model, the paper performed an evaluation of accuracy of proposed model. The results from the evaluation show that the ACI-formula gave inaccurate results with a large scatter in comparison with the test results of this study. A new design formula can be proposed for more accurate estimation of punching shear resistance of (GFRP) specimens.
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高强GFRP筋混凝土平板的冲剪抗力
本研究项目旨在测试嵌入式玻璃纤维增强聚合物(GFRP)增强混凝土板的冲剪性能。然而,GFRP筋加固混凝土构件的抗剪性能,特别是双向钢筋混凝土板的冲剪性能尚未得到充分的研究。七十多年前,人们对传统钢筋加筋板的抗冲剪性能进行了大量的研究,并提出了几种设计方法。然而,由于FRP筋与钢筋的力学性能不同,这些方法不容易应用于FRP筋混凝土板。16个试件将在实验室中浇铸两类增强材料,如玻璃钢和等效钢增强材料。此外,基于作者研究获得的实验数据和ACI模型,本文对所提模型的精度进行了评价。评价结果表明,与本研究的试验结果相比,aci公式给出的结果不准确,散点较大。为更准确地估计GFRP试件的冲剪抗力,提出了新的设计公式。
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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