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Experimental study on bond strength of fiber reinforced polymer rebars in normal strength concrete

机译:高强混凝土中纤维增强聚合物钢筋粘结强度的试验研究

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摘要

The bond behavior of reinforcing bars is an important issue in the design of reinforced concrete structures and the use of fiber reinforced polymer (FRP) rebars is a promising solution to handle the problems of steel reinforcement corrosion. This study investigates the bond characteristics of carbon and aramid FRP (CFRP and AFRP) bars embedded in normal strength concrete. A pullout test was performed on 63 normal strength concrete specimens reinforced with FRP and steel rebars with different embedment lengths and bar diameters. The average bond stress versus slip curve is plotted for all specimens and their failure modes are identified. The effects of the embedment length and diameter of an FRP rebar on its bond strength are examined in this work. The bond strengths obtained from the test results are compared with the predictions by the bond strength equation proposed by Okelo and Yuan (2005), and its validity is evaluated.
机译:钢筋的粘结性能是钢筋混凝土结构设计中的重要问题,而纤维增强聚合物(FRP)钢筋的使用是解决钢筋腐蚀问题的有希望的解决方案。这项研究调查了碳纤维和芳纶FRP(CFRP和AFRP)钢筋在普通强度混凝土中的粘结特性。在63个用FRP和钢筋埋入的长度和直径不同的普通强度混凝土样本上进行了拉拔试验。绘制了所有试样的平均粘结应力与滑移曲线,并确定了它们的破坏模式。在这项工作中,研究了FRP钢筋的包埋长度和直径对其粘结强度的影响。由测试结果获得的结合强度与Okelo和Yuan(2005)提出的结合强度方程式的预测值进行了比较,并对其有效性进行了评估。

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