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Evaluation of Moment Distribution in Continuous Fiber-Reinforced Polymer-Strengthened Concrete Beams

机译:连续纤维增强聚合物增强混凝土梁的弯矩分布评估

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Fiber-reinforced polymer (FRP) strengthening offers many well-documented benefits for the retrofit of existing reinforced concrete (RC) structures. The main drawback in using FRP for such applications, however, is the reduction in ductility capacity after strengthening. This loss in ductility has led worldwide codes to not consider redistribution of bending moments in continuous FRP-strengthened RC beams. This implies that an unstrengthened continuous RC beam that was previously designed under assumptions of moment redistribution (MR) and is to be strengthened with FRP must now be redesigned according to full elastic distribution of bending moments. This could lead to onerous conditions in such strengthening applications. This paper sets out a rationale for the possible appropriate use of redistribution principles for FRP-strengthened beams. Analytical results show that if a section can develop a curvature ductility capacity greater than 2.0, it is likely that redistribution in the order of at least 7.5% can be achieved. These results are presented and further discussed in this paper.
机译:纤维增强聚合物(FRP)增强为现有钢筋混凝土(RC)结构的改造提供了许多有据可查的好处。但是,在此类应用中使用FRP的主要缺点是增强后延展性降低。延展性的丧失已导致世界范围内的法规不考虑连续FRP加固的RC梁中弯矩的重新分配。这意味着以前必须根据弯矩重分布(MR)设计并由FRP加固的未加筋的连续RC梁,现在必须根据弯矩的全弹性分布重新设计。在这种加强应用中,这可能导致繁重的条件。本文为可能在FRP加固梁中合理使用重新分配原理提出了理由。分析结果表明,如果断面的曲率延展能力大于2.0,则很可能可以实现至少7.5%的重新分布。本文将介绍并进一步讨论这些结果。

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