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The Tension-Stiffening Contribution of NSM CFRP to the Behavior of Strengthened RC Beams

机译:NSM CFRP对钢筋混凝土梁性能的拉伸加劲作用

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摘要

Tension stiffening is a characteristic behavior of reinforced concrete (RC) beams which is directly affected by the bond-slip property of steel bar and concrete interfaces. A beam strengthened with a near-surface mounted (NSM) technique would be even more affected by tension stiffening, as the NSM reinforcement also possess a bond-slip property. Yet assessing how much the tension stiffening of NSM contributes to the behavior of RC beams is difficult due to the fact that bond-slip effects cannot be directly incorporated into a strain-based moment-curvature analysis. As such, the tension stiffening is typically incorporated through various empirical formulations, which can require a great deal of testing and calibrations to be done. In this paper a relatively new method, which can be called the mechanics-based segmental approach, is used to directly simulate the tension stiffening effect of NSM reinforcements on RC beams, without the need for empirical formulations to indirectly simulate the tension stiffening. Analysis shows that the tension stiffening of NSM fiber reinforced polymer (FRP) contributes a significant portion to the stiffness and strength of the strengthened RC beam not only during serviceability, but at all load levels.
机译:拉伸刚度是钢筋混凝土(RC)梁的特征,直接受钢筋和混凝土界面的粘结滑移性能影响。由于NSM增强材料还具有粘结滑移特性,因此采用近表面安装(NSM)技术增强的梁将更受拉伸刚度的影响。然而,由于粘结滑动效应不能直接纳入基于应变的弯矩曲率分析中,因此很难评估NSM的拉伸刚度对RC梁的行为有多大作用。这样,通常通过各种经验公式来合并拉伸刚度,这可能需要进行大量的测试和校准。在本文中,一种相对较新的方法,称为基于力学的分段方法,用于直接模拟NSM钢筋对RC梁的抗拉刚度效果,而无需经验公式来间接模拟抗拉刚度。分析表明,NSM纤维增强聚合物(FRP)的拉伸刚度不仅在使用期间而且在所有载荷水平下都对增强的RC梁的刚度和强度做出了重要贡献。

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