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Behavior of Shear-Critical Reinforced Concrete Beams Strengthened with Fiber-Reinforced Polymer-Analytical Method

机译:纤维增强聚合物分析的剪切临界钢筋混凝土梁的性能

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摘要

Test specimens from a study on shear-critical reinforced concrete (RC) beams strengthened using fiber-reinforced polymer (FRP) wraps were found to be poorly predicted using FRP design formulations from CAN/CSA S6-06 andACI 440.2R-08, which resulted in overpredicted FRP debonding failures and underpredicted rupture failures. In addition, some specimens reached FRP failure after the occurrence of flexural yielding, which is beyond the scope of current shear design provisions. An analytical method is presented to predict the load-deformation response of FRP strengthened beams, thereby determining ductility and accounting for shear failures that occur after flexural yielding. This paper also presents revised FRP strain limits for design based on developed theoretical expressions for debonding behavior. Presented strain limits for closed wraps account for both direct tensile rupture within the web and reduced rupture strain at the wrapped beam corners.
机译:发现使用CAN / CSA S6-06和ACI 440.2R-08的FRP设计公式无法很好地预测使用纤维增强聚合物(FRP)包裹层加固的抗剪钢筋混凝土(RC)梁的试样。过度预测的FRP脱胶失败和预测不足的破裂失败。另外,一些试样在弯曲屈服发生后达到了FRP破坏,这超出了当前剪切设计规定的范围。提出了一种分析方法来预测FRP加固梁的荷载-变形响应,从而确定延性并考虑弯曲屈服后发生的剪切破坏。本文还根据已开发的脱粘行为理论表达式,提出了修订的FRP应变极限设计。封闭卷材的当前应变极限既解决了幅材内部的直接拉伸断裂,又解决了在卷绕的束角处降低的断裂应变。

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