Flexural Behaviour of FRC Beams Wrapped With FRP

Dr. Md Imran Khan, Prof Aajid Khan
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Abstract

Structural elements such as beams, slabs and columns may require strengthening during their service life period. A concrete structure may need strengthening for many reasons such as to increase live load capacity, to add reinforcement to a member that has been unsigned or wrongly constructed. The FRPs have various advantages like, high strength to weight ratio, corrosion resistance and ease of installation and flexibility in its use. FRP material which are available in the form of sheet are being used to strengthen a variety of RC elements to enhance the flexural, shear and axial load carrying capacity of these elements. The objective of this experiment is to strengthen the RC beams using fibres and FRP sheets in flexure. In this experimental program CFRP and GFRP sheets were applied to the bottom surface and sides of the concrete beam with different configuration and their performance in flexure were studied. In this experimental program eight RC beams of size 1500 x 150 x 200mm were casted with two 10mm dia. bars as tension zone, two 8mm dia. bars as compression zone and 8mm dia. bars @ 200mm c/c spacing as shear reinforcement. The experimental result shows that the flexural strength of FRP wrapped beams were increased in the range of 23.49% to 67.9% in comparison with the flexural strength of the control beam (unwrapped). The flexural strength of the beam wrapped with the single layer CFRP at the soffit and around the sides (for full depth of the beam) and beam wrapped with the single layer GFRP at the soffit and around the sides (for full depth of the beam) exhibits better performance compared with other FRP beams and increase in flexure was 67.9% in comparison with the capacity of the control beam.
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用玻璃钢包裹的 FRC 梁的挠曲行为
梁、板和柱等结构构件在使用寿命期间可能需要加固。混凝土结构需要加固的原因有很多,如提高活载荷能力、为未签名或错误施工的构件增加钢筋等。玻璃钢具有各种优点,如强度重量比高、耐腐蚀、易于安装和使用灵活。玻璃钢材料以板材的形式出现,被用于加固各种 RC 构件,以提高这些构件的抗弯、抗剪和轴向承载能力。本实验的目的是使用纤维和 FRP 片材对 RC 梁进行抗弯加固。在该实验项目中,CFRP 和 GFRP 片材以不同的配置应用于混凝土梁的底面和侧面,并研究了它们的抗弯性能。在该实验项目中,浇铸了八根尺寸为 1500 x 150 x 200 毫米的 RC 梁,其中两根直径为 10 毫米的钢筋作为受拉区,两根直径为 8 毫米的钢筋作为受压区,直径为 8 毫米的钢筋 @ 200 毫米 c/c 间距作为剪力加固。实验结果表明,与对照梁(未包裹)的抗弯强度相比,包裹玻璃钢的梁的抗弯强度提高了 23.49% 至 67.9%。与其他玻璃钢梁相比,在檐口和两侧(全梁深度)包裹单层 CFRP 的梁和在檐口和两侧(全梁深度)包裹单层 GFRP 的梁的抗弯强度表现更好,抗弯强度比对照梁提高了 67.9%。
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