Effective Moment of Inertia Expression for Concrete Beams Reinforced with Fiber-Reinforced Polymer (FRP)

H. Vogel, D. Svecova
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引用次数: 2

Abstract

This paper will discuss that due to concerns with corrosion, the use of fiber reinforced polymer (FRP) as a replacement to conventional steel reinforcement has greatly increased over the last decade. However, elastic modulus values of some commercially available FRP reinforcement hardly reach 20% of that for conventional steel. Existing code relationships for conventional steel have been modified to address this proprietary difference but the modifications are restricted by the empirical nature of the expressions. This paper provides an alternate approach to estimate the deflection of concrete beams by considering effects of tension stiffening that incorporate material properties of the reinforcement as well as the effects of concrete non-linearity in compression. A database containing experimental load-deflection records from 139 glass FRP (GFRP) and 48 carbon FRP (CFRP) reinforced concrete beams was used to calibrate a tension stiffening model for the proposed approach and establish its accuracy as well as precision through statistical analysis. Results were compared to those obtained from existing relationships and indicate that the revised approach provides higher accuracy at service conditions ranging from 25% to 80% of ultimate.
纤维增强聚合物(FRP)加固混凝土梁的有效惯性矩表达式
本文将讨论由于对腐蚀的担忧,在过去十年中,纤维增强聚合物(FRP)作为传统钢筋的替代品的使用大大增加。然而,一些市售FRP钢筋的弹性模量几乎达不到常规钢的20%。现有的常规钢的规范关系已被修改,以解决这种专有差异,但修改受到表达式的经验性质的限制。本文提供了一种替代方法来估计混凝土梁的挠度,通过考虑拉筋的影响,包括钢筋的材料特性以及混凝土非线性在压缩中的影响。利用包含139根玻璃钢(GFRP)和48根碳纤维玻璃钢(CFRP)钢筋混凝土梁的试验荷载-挠度记录的数据库,为所提出的方法校准了一个张力加筋模型,并通过统计分析确定了其准确性和精度。结果与从现有关系中获得的结果进行了比较,表明修订后的方法在服务条件下提供了更高的精度,范围从最终的25%到80%。
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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