纤维增强聚合物(FRP)加固混凝土结构的抗弯性能

Wahbi Albasyouni, M. Radwan
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引用次数: 0

摘要

玻璃钢的最新用途之一是在钢筋混凝土结构中取代钢的使用。决定选择玻璃钢代替钢的原因有很多,比如它们的重量轻,对建筑的设计非常有益,高强度,高柔韧性。然而,这种材料的最初用途是用于修缮文物建筑或任何其他损坏的结构。有几项研究集中在使用FRP来提高混凝土结构的抗剪和抗弯强度。然而,有限的研究集中在FRP对混凝土梁的抗弯性能的影响。因此,本研究的目的是研究使用纤维增强聚合物增强的混凝土梁的抗弯性能。本研究中进行的实验方案分为4个不同的梁,其中2个采用普通钢加固,另外2个采用碳纤维增强聚合物(CFRP)加固。在最大施加42 MPa时,钢梁发生的最大潜在挠度为4.2 mm。第二梁采用FRP加固,受弯强度为38.06 MPa,挠度约为12mm。第三根梁采用钢筋加固,测得最高抗弯强度为75.56 MPa,该荷载引起的挠度为5.52 mm。最后对最后一根梁进行FRP筋加固,得到的挠度从60.84 MPa为11.11。这项研究显示了在混凝土结构中使用FRP的潜力,特别是在抗弯性能方面。水和化学物质对FRP加固混凝土梁性能的影响有待进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexural Performance of Concrete Structures Reinforced with Fiber Reinforced Polymer (FRP)
ne of the most recent uses of FRP is to replace the use of steel in reinforced concrete structures. There are multiple reasons for deciding to choose FRP instead of steel such as their lightweight which can be quite beneficial to the design of buildings, high strength, and high flexibility. However, the initial use of this material was anticipated in the retrofitting of heritage buildings or any other damaged structures. There are several studies that concentrated on the use of FRP to enhance shear and flexural strength of concrete structures. However, limited studies concentrated on the effect of FRP on flexural behavior of concrete beams. Therefore, the aim of this research is to investigate the flexural performance of concrete beams that are reinforced using fiber reinforced polymers. The experimental program that was conducted in this study was divided into 4 different beams, 2 of them were reinforced using ordinary steel, while the other 2 were reinforced using carbon fiber reinforced polymer (CFRP). The highest potential deflection occurred in steel beam was 4.2 mm after applying a maximum of 42 MPa. The second beam was reinforced with FRP and accomplished 38.06 MPa, and the resulted deflection was around 12mm. The third beam was reinforced with steel and highest flexural strength measured was 75.56 MPa, while the deflection resulted from this load is 5.52 mm. Finally, the last beam was reinforced using FRP rebar and resulted deflection was 11.11 from 60.84 MPa. This study has showed the potential of using FRP in concrete structures especially in terms of flexural performance. Further studies are needed to investigate the influence of water and chemical substances on the performance of concrete beams reinforced with FRP.
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