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Long-Term Flexural Behaviors of GFRP Reinforced Concrete Beams Exposed to Accelerated Aging Exposure Conditions

机译:GFRP增强混凝土梁在加速老化条件下的长期弯曲行为

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This study investigates the impact of accelerated aging conditions on the long-term flexural behavior and ductility of reinforced concrete (RC) members with glass fiber-reinforced polymer (GFRP) bars (RC-GFRP specimen) and steel bars (RC-steel specimen). A total of thirty six specimens were designed with different amounts of reinforcement with three types of reinforcing bars (i.e., helically wrapped GFRP, sand-coated surface GFRP and steel). Eighteen specimens were subjected to sustained loads and accelerated aging conditions (i.e., 47 °C and 80% relative humidity) in a chamber. The flexural behavior of specimens under 300-day exposure was compared to that of the companion specimens without experiencing accelerated aging conditions. Results indicate that the accelerated aging conditions reduced flexural capacity in not only RC-steel, but also RC-GFRP specimens, with different rates of reduction. Different types of GFRP reinforcement exhibited different rates of degradation of the flexural capacity when embedded in concrete under the same exposure conditions. Several existing models were compared with experimental results for predicting the deflection and deformability index for specimens. Bischoff and Gross’s model exhibited an excellent prediction of the time-dependent deflections. Except for the deformability index proposed by Jaeger, there was no general trend related to the aging duration. This study recommends the need for further investigation on the prediction of the deformability index.
机译:这项研究调查加速老化条件对玻璃纤维增​​强聚合物(GFRP)钢筋(RC-GFRP试样)和钢筋(RC-钢试样)的钢筋混凝土(RC)构件的长期弯曲行为和延性的影响。 。总共设计了36个标本,分别使用三种类型的钢筋(即螺旋缠绕的GFRP,砂面表面GFRP和钢)对不同数量的钢筋进行了设计。 18个样品在室内经受了持续的载荷和加速的老化条件(即47°C和80%相对湿度)。将样品在300天暴露下的弯曲行为与伴随样品的弯曲行为进行了比较,而没有经历加速的老化条件。结果表明,加速时效条件不仅降低了RC钢的弯曲能力,而且降低了RC-GFRP试样的弯曲能力,且降低的速率不同。当在相同的暴露条件下嵌入混凝土中时,不同类型的GFRP增强材料表现出不同的抗弯能力退化速率。将几种现有模型与实验结果进行比较,以预测样品的挠度和变形指数。 Bischoff和Gross的模型对随时间变化的偏转表现出了极好的预测。除了Jaeger提出的可变形性指标外,没有与老化时间有关的总体趋势。这项研究建议需要对可变形性指数的预测进行进一步研究。

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