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Durability of Reinforced Concrete Beams Externally Strengthened with CFRP Laminates under Harsh Climatic Conditions

机译:在恶劣气候条件下用CFRP层压板外部加强钢筋混凝土梁的耐久性

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This paper addresses the durability of reinforced concrete beams strengthened with carbon fiber-reinforced polymer (CFRP) laminates under natural and saline environments in the Arabian Gulf. Beam specimens were conditioned under sunlight and saline water for 180, 360, and 730 days and tested under four-point bending until failure. The load-deflection curves, strains, failure modes, ductility, and stiffness of the exposed beams were evaluated. The CFRP-strengthened specimens exhibited a 67% higher ultimate load capacity than control specimens after 28 days and up to 51% and 71% higher load capacity than control specimens after two years of direct sunlight and saline water exposure, respectively. No pronounced loss in strength and stiffness or damage to the epoxy was observed. Failure modes were transformed from cohesive to adhesive due to saline water exposure, whereas sunlight-exposed samples exhibited no failure-pattern change, and failures remained cohesive or interfacial. For design and analysis, environmental strength reduction factors are proposed and compared to current industry guidelines. Thus, CFRP-strengthened laminates can endure and perform effectively when subjected to severe environments of high salinity, temperature, and humidity.
机译:本文解决了在阿拉伯海湾的天然和盐水环境下使用碳纤维增强聚合物(CFRP)层压材料加固的钢筋混凝土梁的耐久性。梁样本在阳光下调节180,360和730天的盐水,并在四点弯曲下进行测试直至发生故障。评估载荷偏转曲线,菌株,故障模式,延展性和延展性的延展性和刚度。在28天后,CFRP加强的标本表现出比对照样品更高的最终负载能力高出67%,并且在两年后的直接阳光和盐水暴露后的控制试样高达51%和71%。观察到不明显的强度和刚度或对环氧损坏的损失。由于盐水曝光,失效模式从粘合到粘合剂转化,而阳光暴露的样品表现出无故障模式变化,并且失败仍然是粘性或界面。对于设计和分析,提出了环境强度降低因素,并与现行行业指南进行了比较。因此,CFRP加强的层压材料可以在高盐度,温度和湿度的严苛环境中有效地忍受和执行。

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