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A Solution for Intermediate Crack-Induced Debonding in Plated Beams

机译:板梁中间裂纹诱导脱胶的解决方案

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Adhesively bonded FRP plate on the tension face of RC beams and slabs increases their flexural strength. The behaviour of the strengthened structure depends on the robustness of the FRP-RC interface bond. Correct modelling of this interface bond behaviour is very important to understand and characterize the common intermediate crack-induced (IC) debonding failure. Existing literature based on simple pull-off test is inadequate to fully analyse this failure due to the differences in the mechanics of failure. This paper considers axial forces, transverse shear forces and bending moments in the adherends of the bonded joint and provides solutions for the different states of the interface experienced using a linearly softening bond-slip model. The inclusion of bending and shear deformations introduces difficulties in relating the applied loading and the interfacial deformation but they are overcome in this study through a section analysis with partial interaction and a closed-form solution is obtained.
机译:RC梁和楼板张紧面上的FRP板粘结增加了其抗弯强度。增强结构的行为取决于FRP-RC界面键的坚固性。正确建模此界面键的行为对于理解和表征常见的中间裂纹诱导(IC)脱键失效非常重要。由于失效机理的差异,现有基于简单拉拔试验的文献不足以全面分析该失效。本文考虑了粘结接头的被粘物中的轴向力,横向剪切力和弯矩,并提供了使用线性软化粘结-滑移模型获得的界面不同状态的解决方案。弯曲和剪切变形的引入引入了将施加的载荷和界面变形联系起来的困难,但是在本研究中通过部分相互作用的截面分析克服了这些困难,并获得了封闭形式的解决方案。

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