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首页> 外文期刊>Journal of Composites for Construction >Modeling Debonding Failure in FRP Flexurally Strengthened RC Members Using a Local Deformation Model
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Modeling Debonding Failure in FRP Flexurally Strengthened RC Members Using a Local Deformation Model

机译:使用局部变形模型对FRP挠性钢筋混凝土构件的脱粘破坏进行建模

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摘要

Reinforced concrete (RC) beams and slabs can be strengthened by bonding fiber-reinforced polymer (FRP) composites to their tension face. The performance of such flexurally strengthened members can be compromised by debonding of the FRP, with debonding initiating near an intermediate crack (IC) in the member away from the end of the FRP. Despite considerable research over the last decade, reliable IC debonding strength models still do not exist. The current paper attempts to correct this situation by presenting a local deformation model that can simulate IC debonding. The progressive formation of flexural cracks, and the associated crack spacings and crack widths are modelled from initial cracking to the onset of debonding. The bond characteristics between the longitudinal steel reinforcement and concrete, and the FRP and concrete, as well as the tension stiffening effect of the reinforcement and FRP to the concrete, are considered. The FRP-to-concrete bond-slip relation is used to determine the onset of debonding. The analytical predictions compare well with experimental results of FRP-strengthened RC cantilever slabs.
机译:可以通过将纤维增强聚合物(FRP)复合材料粘结到张紧面上来增强钢筋混凝土(RC)梁和楼板。此类抗弯增强构件的性能可能会因FRP的剥离而受损,而剥离会在构件中远离FRP端部的中间裂纹(IC)附近引发。尽管在过去十年中进行了大量研究,但仍然不存在可靠的IC剥离强度模型。本文试图通过提出一种可以模拟IC剥离的局部变形模型来纠正这种情况。从初始裂纹到脱胶开始,对挠曲裂纹的逐步形成以及相关的裂纹间距和裂纹宽度进行了建模。考虑了纵向钢筋和混凝土以及FRP和混凝土之间的粘结特性,以及钢筋和FRP对混凝土的拉伸刚度作用。 FRP与混凝土的粘结滑移关系用于确定脱胶的开始时间。该分析预测与FRP加固的RC悬臂楼板的实验结果进行了比较。

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