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Interfacial debonding in steel beams strengthened by externally bonded CFRP

机译:体外粘结碳纤维布增强钢梁界面剥离

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The interfacial debonding at the plate ends is the most common failure mode in a carbon fibre reinforced polymer (CFRP) strengthened steel beam due to the high stress concentration there. This paper presents the results of a theoretical and experimental study on the interfacial debonding of the steel beams reinforced with CFRP plates. An analytical solution was developed to calculate the interfacial shear stress between the steel beam and the CFRP plate. The shear stress-slip relation of the bonding layer was simulated by a bilinear model. Three specimens were tested under three-point bending. Two strain gauges were mounted at the ends of the plate bottom. If the effect of the spew fillet and the normal stress are ignored, the curves of strain recorded from the tests can be simplified to a bilinear model as well, which validates the theoretical results. When the strain is close to zero, the interfacial debonding initiated at the end of the plate. The agreement between the debonding loads obtained from the analytical solutions and the tests is good, which demonstrate that the presented analytical solution can predicate the debonding load correctly.
机译:板端的界面剥离是碳纤维增强聚合物(CFRP)增强钢梁中最常见的破坏模式,这是因为那里的应力集中很高。本文介绍了CFRP板加固钢梁界面脱胶的理论和实验研究结果。开发了一种分析解决方案来计算钢梁和CFRP板之间的界面剪应力。用双线性模型模拟了粘结层的剪切应力-滑动关系。在三点弯曲下测试了三个样品。在板底部的两端安装了两个应变仪。如果忽略了倒角和正应力的影响,则从测试记录的应变曲线也可以简化为双线性模型,从而验证了理论结果。当应变接近于零时,界面剥离在板的末端开始。从解析解和测试中得到的解粘载荷之间的一致性很好,这表明所提出的解析解可以正确地预测解粘载荷。

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