Kaeseberg Stefan, Messerer Dennis, Holschemacher Klaus
Structural Concrete Institute (IfB), Leipzig University of Applied Sciences, Karl-Liebknecht-Str. 132, 04277 Leipzig, Germany.
Materials (Basel). 2020 Oct 9;13(20):4467. doi: 10.3390/ma13204467.
The confinement of reinforced concrete (RC) compression members by fiber-reinforced polymers (FRPs) is an effective measure for the strengthening and retrofitting of existing structures. Thus far, extensive research on the stress-strain behavior and ultimate limit state design of FRP-confined concrete has been conducted, leading to various design models. However, these models are significantly different when compared to one another. In particular, the use of certain empirical efficiency and reduction factors results in various predictions of load-bearing behavior. Furthermore, most experimental programs solely focus on plain concrete specimens or demonstrate insufficient variation in the material properties. Therefore, this paper presents a comprehensive experimental study on plain and reinforced FRP-confined concrete, limited to circular cross sections. The program included 63 carbon FRP (CFRP)-confined plain and 60 CFRP-confined RC specimens with a variation in the geometries and in the applied materials. The analysis showed a significant influence of the compressive strength of the confined concrete on the confinement efficiency in the design methodology, as well as the importance of the proper determination of individual reduction values for different FRP composites. Finally, applicable experimental test results from the literature were included, enabling the development of a modified stress-strain and ultimate condition design model.
采用纤维增强聚合物(FRP)对钢筋混凝土(RC)受压构件进行约束是既有结构加固改造的有效措施。到目前为止,针对FRP约束混凝土的应力-应变行为和极限状态设计已开展了大量研究,得出了各种设计模型。然而,这些模型相互之间存在显著差异。特别是,某些经验效率系数和折减系数的使用导致了对承载行为的各种预测结果。此外,大多数试验项目仅关注素混凝土试件,或者材料性能的变化不足。因此,本文针对圆形截面的素FRP约束混凝土和配筋FRP约束混凝土开展了一项全面的试验研究。该试验项目包括63个碳纤维增强聚合物(CFRP)约束素混凝土试件和60个CFRP约束RC试件,试件的几何尺寸和所用材料有所变化。分析表明,在设计方法中,约束混凝土的抗压强度对约束效率有显著影响,同时正确确定不同FRP复合材料的单个折减值也很重要。最后,纳入了文献中的适用试验结果,从而得以开发出一种改进的应力-应变和极限状态设计模型。