Saad Saad, Polak Maria Anna
Department of Civil and Environmental Engineering, University of Waterloo, Waterloo, ON N2L 3G1, Canada.
Materials (Basel). 2025 Jul 17;18(14):3367. doi: 10.3390/ma18143367.
Glass Fiber-Reinforced Polymer (GFRP) bars are becoming increasingly common in structural engineering applications due to their superior material properties, mainly their resistance to corrosion due to their metallic nature in comparison to steel reinforcement and their improved durability in alkaline environments compared to CFRP and BFRP reinforcement. However, GFRP bars also suffer from a few limitations. One of the main issues that affects the performance of GFRP reinforcing bars is their bond with concrete, which may differ from the bond between traditional steel bars and concrete. However, despite the wide attention of researchers, there has not been a critical review of the recent research progress on bond behavior between GFRP bars and concrete. The objective of this paper is to provide an overview of the current state of research on bond in GFRP-reinforced concrete in an attempt to systematize the existing scientific knowledge. The study summarizes experimental investigations that directly measure bond strength and investigates the different factors that influence it. Additionally, an overview of the analytical and empirical models used to simulate bond behavior is then presented. The findings indicate the dependence of the bond on several factors that include bar diameter, bar surface, concrete strength, and embedment length. Additionally, it was concluded that both traditional and more recent bond models do not explicitly account for the effect of different factors, which highlights the need for improved bond models that do not require calibration with experimental tests.
玻璃纤维增强聚合物(GFRP)筋由于其优异的材料性能,在结构工程应用中越来越普遍。主要是与钢筋相比,其金属性质使其具有抗腐蚀能力,与碳纤维增强塑料(CFRP)和玄武岩纤维增强塑料(BFRP)筋相比,在碱性环境中具有更好的耐久性。然而,GFRP筋也存在一些局限性。影响GFRP钢筋性能的主要问题之一是其与混凝土的粘结,这可能与传统钢筋和混凝土之间的粘结不同。然而,尽管受到了研究人员的广泛关注,但尚未对GFRP筋与混凝土粘结性能的最新研究进展进行批判性综述。本文的目的是概述GFRP增强混凝土粘结方面的研究现状,试图将现有的科学知识系统化。该研究总结了直接测量粘结强度的试验研究,并研究了影响粘结强度的不同因素。此外,还介绍了用于模拟粘结行为的分析模型和经验模型的概述。研究结果表明,粘结力取决于几个因素,包括钢筋直径、钢筋表面、混凝土强度和埋入长度。此外,得出的结论是,传统的和最新的粘结模型都没有明确考虑不同因素的影响,这突出了需要改进的粘结模型,而这些模型不需要通过试验进行校准。