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Flexural Cracks in Fiber-Reinforced Concrete Beams with Fiber-Reinforced Polymer Reinforcing Bars

机译:纤维增强聚合物钢筋的纤维混凝土梁的挠曲裂缝

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摘要

Fiber-reinforced polymer (FRP) reinforcing bars have attracted considerable attention for applications where corrosion of steel reinforcement is problematic. Due to the generally low elastic modulus and poor bond characteristics of FRP as compared to steel reinforcing bars, the use of FRP results in larger crack widths under service loads. Fiber-reinforced concrete (FRC) is proposed for use with FRP to reduce crack widths. The work presented herein includes the results from 16 beams tested under four-point bending with either Grade 420 (Grade 60) steel or FRP reinforcing bars, and either plain concrete or FRC. A modified Gergely-Lutz model was applied to the measured crack widths to calculate bond coefficients that were used to quantify the effectiveness of FRC in reducing crack widths. In the beams with steel reinforcing bars, the FRC was found to have little influence on crack widths. In the beams with FRP reinforcing bars, the FRC was found to significantly reduce maximum crack widths.
机译:纤维增强聚合物(FRP)增强棒已在钢筋腐蚀问题成问题的应用中引起了相当大的关注。由于与钢钢筋相比,FRP通常具有较低的弹性模量和较差的粘结特性,因此在工作载荷下使用FRP会导致较大的裂缝宽度。提议将纤维增强混凝土(FRC)与FRP一起使用以减小裂缝宽度。本文介绍的工作包括使用420级(60级)钢或FRP增强钢筋以及纯混凝土或FRC在四点弯曲下测试的16个梁的结果。将改进的Gergely-Lutz模型应用于测得的裂缝宽度,以计算结合系数,该系数用于量化FRC减小裂缝宽度的有效性。在带有钢筋的梁中,发现FRC对裂缝宽度几乎没有影响。在带有FRP钢筋的梁中,发现FRC显着减小了最大裂缝宽度。

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