Baena Marta, Jahani Younes, Torres Lluís, Barris Cristina, Perera Ricardo
Analysis and Advanced Materials for Structural Design (AMADE), Polytechnic School, University of Girona, 17003 Girona, Spain.
Department of Mechanical Engineering, Technical University of Madrid, 28006 Madrid, Spain.
Polymers (Basel). 2023 Feb 8;15(4):851. doi: 10.3390/polym15040851.
This paper aims to evaluate the influence of relatively high service temperatures (near or beyond the glass transition temperature () of epoxy adhesive) on the flexural performance and end debonding phenomenon in near-surface mounted (NSM) carbon fiber-reinforced polymer (CFRP)-strengthened, reinforced concrete (RC) beams. To this end, an experimental program consisting of 24 beams (divided into four groups) was performed, where different parameters was combined (i.e., service temperature, steel reinforcement ratio, CFRP ratio, and concrete compressive strength). In addition, the effect of the testing temperature on the end debonding phenomenon was investigated with an analytical procedure according to Bulletin 90, and the predictions were compared to experimental results. Taking specimens tested at 20 °C as a reference, no considerable change was observed in the ultimate load of the specimens tested below 60 °C (being in the range of epoxy ), and all specimens failed by FRP rupture. On the other hand, the increase in testing temperature up to 70 and 85 °C was followed by a decrease in the capacity of the strengthened beams and a change in failure mode, moving from FRP rupture to end debonding and concrete crushing. The analytical procedure successfully predicted the occurrence of premature end debonding failure and demonstrated that the effect of temperature on the mechanical properties of materials can be a key factor when predicting the premature end debonding in a NSM joint.
本文旨在评估相对较高的服役温度(接近或超过环氧胶粘剂的玻璃化转变温度())对近表面粘贴(NSM)碳纤维增强聚合物(CFRP)加固的钢筋混凝土(RC)梁的抗弯性能和端部脱粘现象的影响。为此,进行了一个由24根梁(分为四组)组成的试验项目,其中组合了不同参数(即服役温度、钢筋比率、CFRP比率和混凝土抗压强度)。此外,根据第90号公告采用分析程序研究了试验温度对端部脱粘现象的影响,并将预测结果与试验结果进行了比较。以在20°C下测试的试件作为参考,在60°C以下(处于环氧树脂的范围内)测试的试件的极限荷载未观察到显著变化,所有试件均因FRP断裂而破坏。另一方面,将试验温度提高到70°C和85°C后,加固梁的承载力下降,破坏模式发生变化,从FRP断裂转变为端部脱粘和混凝土压碎。该分析程序成功预测了过早端部脱粘破坏的发生,并表明在预测NSM接头的过早端部脱粘时,温度对材料力学性能的影响可能是一个关键因素。