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Experimental and Numerical Study on Strengthening of R.C Slabs at Tension Side Using Lower Concrete Layer Reinforced by FRP Elements

机译:FRP筋加固下混凝土层加固钢筋混凝土楼板的试验与数值研究。

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Aims: Study the strengthening of reinforced concrete slabs at tension side using lower concrete layer reinforced by FRP bars. The proposed layer improves strongly the flexural strength and the rigidity of R.C slabs, moreover, FRP elements are noncorrosive in contrast with the traditional strengthening layers reinforced by steel bars. Study Design: Parametric study is carried out by varying the material type, thickness of strengthening layer, spacing between strengthening layer reinforcement bars, cross sectional area of this reinforcement and the type of the strengthening reinforcement. Methodology: This study presents the efficiency of adding lower concrete layer reinforced by different materials to increase the flexural strength for two-way R.C slabs. Eleven half-scale two-way R.C slab specimens were prepared and tested under four point bending. One of these slabs was unstrengthened and considered as a control specimen. The other specimens were strengthened by using different lower concrete layers reinforced mainly by fiber reinforced polymer (FRP) bars. The parameters of this study included the material type (reinforcement steel, glass fiber and carbon fiber), the thickness of strengthening layer (30 & 50 mm), spacing between strengthening layer reinforcement bars (100 & 200 mm), cross sectional area of this reinforcement (A & 2A) and the type of the strengthening reinforcement (FRP bars & FRP strips). Results: The experimental results included cracking load, ultimate load, load-deflection relationships, relative ductility, and flexural stiffness. Conclusion: The experimental results showed an improvement in the flexural behavior of the strengthened specimens compared to control specimen. The flexural strength of the different strengthened specimens increased by 37% to 112% compared to the control specimen. Moreover, a finite element models were developed by ANSYS (version 15) to simulate all the tested specimens. The results calculated based on FEM models were in good agreement with the corresponding experimental ones. However, the calculated ultimate loads were slightly higher than the experimental ultimate loads up to 12%.
机译:目的:研究使用FRP筋加固的下部混凝土层在受拉侧加固钢筋混凝土平板的方法。所提出的层极大地提高了钢筋混凝土板的抗弯强度和刚度,此外,与传统的钢筋增强层相比,FRP元件无腐蚀。研究设计:参数研究是通过改变材料类型,增强层的厚度,增强层钢筋之间的间距,增强材料的横截面积以及增强材料的类型来进行的。方法:本研究提出了添加不同材料增强的下部混凝土层以增加双向R.C板的抗弯强度的效率。制备了11个半比例双向R.C平板试样,并在四点弯曲下进行了测试。这些板中的一块未加强,并被认为是对照样品。其他标本通过使用主要由纤维增强聚合物(FRP)筋加固的不同下部混凝土层进行加固。这项研究的参数包括材料类型(钢筋,玻璃纤维和碳纤维),加强层的厚度(30和50毫米),加强层钢筋之间的间距(100和200毫米),横截面积钢筋(A和2A)和加强钢筋的类型(玻璃钢钢筋和玻璃钢带)。结果:实验结果包括开裂载荷,极限载荷,载荷-挠度关系,相对延性和抗弯刚度。结论:实验结果表明,与对照试样相比,加强试样的抗弯性能有所改善。与对照样品相比,不同强化样品的抗弯强度提高了37%至112%。此外,ANSYS(版本15)开发了一个有限元模型来模拟所有测试样本。基于有限元模型的计算结果与相应的实验结果吻合良好。但是,计算得出的极限载荷略高于实验极限载荷,最高可达12%。

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