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Crack induced interfacial debonding in damaged RC slabs strengthened with FRP

机译:用FRP加强损坏的RC板坯裂缝诱导界面剥离

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Adhesively bonded FRP patches can be used to strengthen damaged reinforced concrete slabs, which typically exhibit a two-dimensional cracking pattern. The combination of a layered configuration and a cracked substrate designates interfacial debonding as a principal failure mechanism. The present work aims to shed light on the fundamental questions regarding the behavior of this cracked and strengthened layered form, using a high-order multi-layered plate theory and a corresponding finite element formulation, and with emphasis on the modeling of two dimensional plate-type cracks and their impact on the structural response. The analytical-computational platform addresses the manifold challenges involved in modeling the crack induced discontinuities and the two-dimensional evolution of interfacial debonding. The study looks into the behavior of a shear cracked beam and a diagonally cracked and FRP patched square slab. It reveals the unstable, two-dimensional, and not-self-similar nature of crack-induced debonding in two-say slabs. The debonding mechanism is characterized through irregular equilibrium paths and through the interfacial traction profiles that govern its evolution and stability features. The essential differences between the known debonding mechanisms observed in cracked beams and the case at hand are noted and discussed, setting the latter as a new and separate category.
机译:粘合粘结的FRP贴片可用于加强损坏的钢筋混凝土板,其通常表现出二维裂缝图案。分层配置和裂纹基板的组合将界面剥离作为主要故障机制表示。目前的工作旨在利用高阶多层板理论和相应的有限元制剂对这种破裂和加强分层形式的行为的基本问题阐明,并强调二维板的建模 - 类型裂缝及其对结构反应的影响。分析计算平台解决了建模裂缝诱导的不连续性和界面剥离的二维演变所涉及的多元挑战。该研究探讨了剪力裂纹梁的行为和对角裂纹和FRP打电话的方形板坯。它揭示了在双边板坯中裂缝引起的裂缝诱导的不稳定,二维和非自我相似性质。剥离机制通过不规则的平衡路径和通过控制其演化和稳定性特征的界面牵引轮廓来表征。注意到在裂纹束中观察到的已知剥离机制与手的情况之间的基本差异并讨论,将后者设置为新的和单独的类别。

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