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Creep effect on the behavior of concrete beams reinforced with GFRP bars subjected to different environments

机译:蠕变对不同环境下玻璃纤维增​​强筋混凝土梁性能的影响

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The effect of different environmental conditions on the creep behavior of concrete beams reinforced with glass fiber reinforced polymer (GFRP) bars under sustained loads is investigated. This is achieved through testing concrete beams reinforced with GFRP bars and subjected to a stress level of about 20-25% of the ultimate stress of the GFRP bars. Reference beams were loaded in the temperature-controlled laboratory (24 ± 3℃). Other test beams were either completely or partially immersed in different environments (tap-water and sea-water) at elevated temperature (40 ± 2℃) to accelerate the reaction. During the exposure period, which lasted for ten months, strains in concrete and GFRP bars as well as the midspan deflections were recorded for all considered environmental conditions. The results show that the creep effect due to sustained loads was significant for all environments considered in the study and the highest effect was on beams subjected to wet/dry cycles of sea-water at 40 ± 2℃.
机译:研究了在持续荷载下,不同环境条件对玻璃纤维增​​强聚合物(GFRP)钢筋混凝土梁的蠕变性能的影响。这是通过测试用GFRP筋加固的混凝土梁并承受的应力水平约为GFRP筋的极限应力的20-25%来实现的。将参考光束加载到温度控制实验室(24±3℃)中。将其他测试光束完全或部分浸入高温(40±2℃)的不同环境(自来水和海水)中以加速反应。在持续10个月的暴露期中,记录了所有考虑到的环境条件下混凝土和GFRP筋的应变以及中跨挠度。结果表明,在研究中考虑的所有环境中,持续荷载引起的蠕变效应都很显着,而对承受40±2℃海水的湿/干循环的梁影响最大。

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