Alsuhaibani Eyad, Yazdani Nur, Beneberu Eyosias
Department of Civil Engineering, College of Engineering, Qassim University, Buraidah 52571, Saudi Arabia.
Department of Civil Engineering, The University of Texas at Arlington, Box 19308, Arlington, TX 76019, USA.
Polymers (Basel). 2022 Aug 5;14(15):3207. doi: 10.3390/polym14153207.
The feasibility of strengthening deteriorated or under-capacity concrete structures with external carbon-fiber-reinforced polymer (CFRP) laminates has been widely validated in the literature. However, there is a lack of knowledge on the in situ long-term performance and age-related environmental degradation of the mechanical properties of the laminates. The current study involved the immersion of coupons from a common new CFRP laminate in heated water at 23, 45, and 60 °C for 224 days. The coupons were then tested for residual tensile properties, such as tensile capacity and elastic modulus, using ASTM D3039 (2017) specifications. The CFRP tensile capacity and elastic modulus decreased by a maximum of 33% and 26%, respectively, for 224 days of exposure. Based on the test data, an age-based long-term prediction model with excellent reliability for CFRP laminate tensile capacity was developed. The model was then calibrated with test results from old CFRP coupons collected from an existing CFRP laminate retrofitted concrete bridge. The calibrated model output was then compared with the environmental reduction factor from ACI 440.2R-17 and a few other common sources. It was found that the ACI specified a reduction factor of 0.75, which does not consider the CFRP age and overestimates the design tensile strength of the CFRP laminate by approximately 13%, which may compromise the structural safety of retrofitted bridges. The reduction factors from the other guidelines varied between 0.51 and 0.85.
采用外部碳纤维增强聚合物(CFRP)层压板加固劣化或承载能力不足的混凝土结构的可行性已在文献中得到广泛验证。然而,对于层压板力学性能的现场长期性能以及与使用年限相关的环境退化情况,人们还缺乏了解。当前的研究包括将一种常见新型CFRP层压板的试样在23℃、45℃和60℃的热水中浸泡224天。然后按照ASTM D3039(2017)规范对试样进行残余拉伸性能测试,如拉伸强度和弹性模量。暴露224天后,CFRP的拉伸强度和弹性模量分别最多下降了33%和26%。基于测试数据,开发了一个对CFRP层压板拉伸强度具有出色可靠性的基于使用年限的长期预测模型。然后用从一座现有CFRP层压板加固混凝土桥梁收集的旧CFRP试样的测试结果对该模型进行校准。接着将校准后的模型输出结果与美国混凝土学会(ACI)440.2R - 17及其他一些常见来源的环境折减系数进行比较。结果发现,ACI规定的折减系数为0.75,该系数未考虑CFRP的使用年限,并且高估了CFRP层压板的设计拉伸强度约13%,这可能会危及加固桥梁的结构安全。其他指南的折减系数在0.51至0.85之间。