Alkhraisha Hakem, Mhanna Haya, Tello Noor, Abed Farid
Department of Civil Engineering, American University of Sharjah, Sharjah 26666, UAE.
Polymers (Basel). 2020 Sep 16;12(9):2110. doi: 10.3390/polym12092110.
The main objective of this study was to investigate experimentally and numerically the behavior of basalt fiber-reinforced polymer (BFRP) reinforcement exposed to a combination of ultraviolet rays, humidity, and rain. Specifically, the effects of the previously stated harsh exposure on the serviceability performance and flexural capacity of BFRP reinforced concrete beams was examined. Holding the exposure parameter constant, the study also evaluated the effects of reinforcement ratio and beam detailing on the flexural capacity and the bond-dependent coefficient () of the beams. Seven beams were cast and tested, four of which were reinforced with exposed BFRP bars, two were reinforced with unexposed BFRP bars, and one specimen was cast and reinforced with steel bars to serve as a benchmark specimen. The results indicate that the factor was averaged to be 0.61 for all the beams. Test results also indicate that increasing the reinforcement ratio did not result in a directly proportional increase in the moment capacity. The period of exposure did not cause any significant impact on the behavior of the over-reinforced beams. Thus, a finite element model was created to simulate the impact of exposure on the behavior of under-reinforced BFRP reinforced concrete beams.
本研究的主要目的是通过实验和数值模拟来研究玄武岩纤维增强聚合物(BFRP)增强材料在紫外线、湿度和雨水共同作用下的性能。具体而言,研究了上述恶劣环境对BFRP增强混凝土梁的使用性能和抗弯能力的影响。在保持暴露参数不变的情况下,该研究还评估了配筋率和梁的细部构造对梁的抗弯能力和粘结相关系数()的影响。浇筑并测试了七根梁,其中四根用暴露的BFRP筋增强,两根用未暴露的BFRP筋增强,还有一个试件用钢筋浇筑和增强,用作基准试件。结果表明,所有梁的系数平均为0.61。试验结果还表明,增加配筋率并不会导致弯矩承载力成正比例增加。暴露时间对超筋梁的性能没有造成任何显著影响。因此,创建了一个有限元模型来模拟暴露对适筋BFRP增强混凝土梁性能的影响。