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Durability test on the flexural performance of seawater sea-sand concrete beams completely reinforced with FRP bars

机译:FRP筋完全加固的海水海砂混凝土梁抗弯性能的耐久性试验

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Fibre-reinforced polymer (FRP) bars and seawater sea-sand concrete (SWSSC) is a very promising new combination. When seawater and sea sand are used, not only the tensile reinforcements but also the stirrups and top reinforcements should be FRP to avoid corrosion. In this paper, an accelerated ageing test was conducted on SWSSC beams completely reinforced with FRP bars in the marine environment. Two types of beams were tested. One had a basalt FRP (BFRP) bar as the tensile reinforcement, and the other had a steel-FRP composite bar (SFCB) as the tensile reinforcement. The stirrups and top reinforcements were all BFRP bars. The experimental results indicated that cracks in both types of beams after bending tests became sparse after environmental exposure. The load fluctuation during crack formation increases for environmentally conditioned SWSSC beams reinforced with BFRP bars. After immersion in 50 degrees C seawater for longer than 6 months, the failure mode of BFRP beams changed from concrete crushing to shear failure, and the contribution of BFRP stirrups to shear resistance capacity clearly decreased. For the SFCB beam, the failure mode changed from concrete crushing to SFCB rupture due to the reduction of tensile strength of SFCB after exposure, which causes a maximum of 11% reduction in load capacity. (C) 2018 Elsevier Ltd. All rights reserved.
机译:纤维增强聚合物(FRP)筋和海水海砂混凝土(SWSSC)是非常有前途的新组合。当使用海水和海砂时,不仅抗拉钢筋,而且箍筋和顶部钢筋都应采用FRP以避免腐蚀。本文在海洋环境中对完全用FRP筋加固的SWSSC梁进行了加速老化试验。测试了两种类型的光束。一个使用玄武岩FRP(BFRP)钢筋作为抗拉钢筋,另一个使用钢-FRP复合材料钢筋(SFCB)作为抗拉钢筋。箍筋和顶部钢筋均为BFRP筋。实验结果表明,弯曲试验后两种梁的裂缝在暴露于环境后变得稀疏。对于使用BFRP筋加固的环境条件良好的SWSSC梁,裂纹形成期间的载荷波动会增加。浸泡在50摄氏度的海水中超过6个月后,BFRP梁的破坏模式从混凝土破碎变为剪切破坏,BFRP箍筋对抗剪承载力的贡献明显降低。对于SFCB梁,由于暴露后SFCB的抗拉强度降低,其破坏模式从混凝土碾压变为SFCB破裂,从而导致最大承载能力降低11%。 (C)2018 Elsevier Ltd.保留所有权利。

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