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Experimental study on the durability of FRP bars reinforced concrete beams in simulated ocean environment

机译:FRP筋混凝土梁在模拟海洋环境下的耐久性试验研究

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In this paper, the flexural performance of fiber-reinforced polymer (FRP) bars reinforced concrete (RC) beams after conditioning in a simulated seawater wet-dry cycling environment for 6, 9 and 12 months is experimentally investigated. Two types of FRP bars, i.e. basalt FRP (BFRP) bars and steel-FRP composite bars (SFCBs), are adopted. Steel bars are employed for comparison. During the conditioning, a constant load is coupled to the beams. A total of 24 simply supported beams are tested. In addition, microscopic damage to the conditioned BFRP bars is detected by scanning electron microscopy (SEM). The test results indicated that total corrosion was observed at the surface of the bottom longitudinal steel bars after a maximum exposure of 12 months. However, the degradation of the macro-mechanical properties of the steel bars RC beam was not distinct. The ultimate load of the BFRP bars RC beams after 6 months, 9 months and 12 months was reduced by 22%, 33% and 42%, respectively. The yield load and ultimate load of the SFCBs RC beams were reduced by a maximum of 18% and 38%, respectively. The SEM observations revealed that there were distinct damages at the outer layer of the BFRP bars after 12-month conditioning.
机译:在本文中,通过实验研究了在模拟的海水湿-干循环环境中调理6、9和12个月后,纤维增强聚合物(FRP)钢筋混凝土(RC)梁的抗弯性能。采用两种类型的FRP钢筋,即玄武岩FRP(BFRP)钢筋和钢-FRP复合钢筋(SFCB)。使用钢筋进行比较。在调节期间,恒定的载荷耦合到梁。总共测试了24个简单支撑的梁。另外,通过扫描电子显微镜(SEM)检测到对条件化的BFRP棒的微观损伤。测试结果表明,最大暴露时间为12个月后,在底部纵向钢筋的表面观察到完全腐蚀。但是,钢筋RC梁的宏观力学性能的下降并不明显。 BFRP钢筋混凝土梁在6个月,9个月和12个月后的极限载荷分别降低了22%,33%和42%。 SFCB RC梁的屈服荷载和极限荷载分别分别降低了18%和38%。 SEM观察表明,调理12个月后,BFRP钢筋的外层存在明显的损伤。

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