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A fracture-based model for FRP debonding in strengthened beams

机译:基于裂缝的FRP加固梁模型

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This paper presents an experimental and analytical research study aimed at understanding and modeling of debonding failures in fiber reinforced polymer (FRP) strengthened reinforced concrete (RC) beams. The experimental program investigated debonding failure modes and mechanisms in beams strengthened in shear and/or flexure and tested under monotonic loading. A newly developed fracture mechanics based model considers the global energy balance of the system and predicts the FRP debonding failure load by characterizing the dominant mechanisms of energy dissipation during debonding. Validation of the model is performed using experimental data from several independent research studies and a design procedure is outlined.
机译:本文提出了一项实验和分析研究,旨在理解和建模纤维增强聚合物(FRP)增强钢筋混凝土(RC)梁的脱胶破坏。实验程序研究了在抗剪和/或挠曲中加固并在单调荷载下进行测试的梁的脱粘破坏模式和机理。一个新开发的基于断裂力学的模型考虑了系统的整体能量平衡,并通过表征脱胶过程中能量耗散的主要机制来预测FRP脱胶失败载荷。使用来自数个独立研究的实验数据进行模型验证,并概述设计流程。

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