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Strength Degradation in Curved Fiber-reinforced Polymer (FRP) Bars Used as Concrete Reinforcement

机译:弯曲纤维增强聚合物(FRP)棒的强度降解用作混凝土加固

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摘要

Steel reinforcements in concrete tend to corrode and this process can lead to structural damage. Fiber-reinforced polymer (FRP) reinforcements represent a viable alternative for structures exposed to aggressive environments and have many possible applications where superior corrosion resistance properties are required. The use of FRP rebars as internal reinforcements for concrete, however, is limited to specific structural elements and does not yet extend to the whole structure. The reason for this relates to the limited availability of curved or shaped reinforcing FRP elements on the market, as well as their reduced structural performance. This article presents a state-of-the art review on the strength degradation of curved FRP composites, and also assesses the performance of existing predictive models for the bend capacity of FRP reinforcements. Previous research has shown that the mechanical performance of bent portions of FRP bars significantly reduces under a multiaxial combination of stresses. Indeed, the tensile strength of bent FRP bars can be as low as 25% of the maximum tensile strength developed in a straight counterpart. In a significant number of cases, the current design recommendations for concrete structures reinforced with FRP were found to overestimate the bend capacity of FRP bars. A more accurate and practical predictive model based on the Tsai–Hill failure criteria is also discussed. This review article also identifies potential challenges and future directions of research for exploring the use of curved/shaped FRP composites in civil engineering applications.
机译:混凝土中的钢筋增强趋于腐蚀,这一过程可能导致结构损伤。纤维增强聚合物(FRP)增强材料代表了暴露于侵蚀性环境的结构的可行替代方案,并且具有许多可能需要的应用,其中需要卓越的耐腐蚀性。然而,使用FRP钢筋作为混凝土的内部增强物限于特定的结构元素,并且尚未延伸到整个结构。这涉及在市场上有限的弯曲或成型增强FRP元素的有限可用性,以及其结构性能降低。本文提出了关于曲线FRP复合材料的强度降解的最新综述,并评估了FRP增强件弯曲能力的现有预测模型的性能。以前的研究表明,在压力的多轴组合下,FRP条的弯曲部分的机械性能显着减少。实际上,弯曲FRP条的拉伸强度可以低至25%的25%在直线上产生的最大拉伸强度。在大量情况下,发现使用FRP加强的混凝土结构的当前设计建议估计FRP棒的弯曲能力。还讨论了基于Tsai-Hill失败标准的更准确和实用的预测模型。该审查文章还确定了探索在土木工程应用中使用弯曲/形FRP复合材料的研究的潜在挑战和未来方向。

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