College of Civil Engineering, Tongji University, Shanghai 200092, China.
Sensors (Basel). 2019 Feb 5;19(3):654. doi: 10.3390/s19030654.
Fiber-reinforced polymer (FRP) has supreme resistance to corrosion and can be designed with optic fibers. FRP can be an alternative to steel reinforcement for concrete structures, and can serve as a sensor for smart concrete structures. Due to poor cracking control and bond performance, the limit of flexural capacity in the serviceability limit state has not been determined, which has obstructed the wider application of FRP bars in smart structures. In this study, in order to overcome these shortcomings, a new engineering cementitious composite (ECC) with superior tensile strain capacity was used to replace the cover around the FRP bars in the tensile zone. To investigate the anti-cracking performance of the new composite beam, seven simply supported beams were designed. In the preliminary investigation, the longitudinal FRP bars in these beams were designed without optic fibers to focus on the mechanical behavior. The beams were tested under four-point load and measured using the digital sensor technique, digital image correlation (DIC). The test results showed that introducing a new ECC layer on the tensile side improves the cracking control and flexural behavior (load capacity and deformability) of a FRP-reinforced sea sand and seawater concrete (SSC) beam, especially in the serviceability limit state. We demonstrate the new composite beam can steadily and fully improve the tensile capacity of FRP bars, which is the basis of using FRP bars as sensors.
纤维增强聚合物(FRP)具有超强的抗腐蚀性,并且可以与光纤一起设计。FRP 可以替代混凝土结构中的钢筋,也可以作为智能混凝土结构的传感器。由于裂缝控制和粘结性能较差,在使用极限状态下的弯曲能力极限尚未确定,这阻碍了 FRP 棒在智能结构中的更广泛应用。在这项研究中,为了克服这些缺点,使用具有优越拉伸应变能力的新型工程水泥基复合材料(ECC)来替代拉伸区中 FRP 棒的保护层。为了研究新型复合梁的抗裂性能,设计了七根简支梁。在初步研究中,这些梁中的纵向 FRP 棒没有设计光纤,以专注于机械行为。梁在四点加载下进行测试,并使用数字传感器技术、数字图像相关(DIC)进行测量。测试结果表明,在拉伸侧引入新的 ECC 层可以改善 FRP 增强海砂和海水混凝土(SSC)梁的裂缝控制和弯曲性能(承载能力和变形能力),尤其是在使用极限状态下。我们证明了新型复合梁可以稳定且充分地提高 FRP 棒的拉伸能力,这是将 FRP 棒用作传感器的基础。