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Fatigue Assessment Model of Corroded RC Beams Strengthened with Prestressed CFRP Sheets

机译:预应力CFRP板加固锈蚀RC梁的疲劳评估模型。

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Abstract This paper presents a fatigue assessment model that was developed for corroded reinforced concrete (RC) beams strengthened using prestressed carbon fiber-reinforced polymer (CFRP) sheets. The proposed model considers the fatigue properties of the constituent materials as well as the section equilibrium. The model provides a rational approach that can be used to explicitly assess the failure mode, fatigue life, fatigue strength, stiffness, and post-fatigue ultimate capacity of corroded beams strengthened with prestressed CFRP. A parametric analysis demonstrated that the controlling factor for the fatigue behavior of the beams is the fatigue behavior of the corroded steel bars. Strengthening with one layer of non-prestressed CFRP sheets restored the fatigue behavior of beams with rebar at a low corrosion degree to the level of the uncorroded beams, while strengthening with 20- and 30%-prestressed CFRP sheets restored the fatigue behavior of the beams with medium and high corrosion degrees, respectively, to the values of the uncorroded beams. Under cyclic fatigue loading, the factors for the strengthening design of corroded RC beams fall in the order of stiffness, fatigue life, fatigue strength, and ultimate capacity.
机译:摘要本文提出了一种疲劳评估模型,该模型针对使用预应力碳纤维增强聚合物(CFRP)板加固的锈蚀钢筋混凝土(RC)梁而开发。所提出的模型考虑了组成材料的疲劳特性以及截面平衡。该模型提供了一种合理的方法,可用于显式评估用预应力CFRP加固的腐蚀梁的破坏模式,疲劳寿命,疲劳强度,刚度和疲劳后极限容量。参数分析表明,梁疲劳性能的控制因素是锈蚀钢筋的疲劳性能。一层非预应力CFRP板加固可将具有低腐蚀度的钢筋的梁的疲劳性能恢复到未腐蚀梁的水平,而20%和30%的预应力CFRP板加固可恢复梁的疲劳性能腐蚀程度分别为中等和较高,达到未腐蚀梁的值。在周期性疲劳载荷下,锈蚀RC梁的加固设计因素按刚度,疲劳寿命,疲劳强度和极限承载力的顺序排列。

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