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Interfacial Behavior of Side Plated CFRP-to- Concrete Joints under Cyclic Shear Loading

机译:循环剪切载荷下侧镀CFRP-混凝土关节的界面行为

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The strengthening of reinforced concrete structures by means of externally bonded fiber reinforced polymers FRPs is becoming an attractive technique for upgrading existing structures. Although previous laboratory investigations have shown that the shear capacities of beams can be increased considerably with this strengthening technique, premature failure by debonding of the FRP reinforcement can often limit its effectiveness. To gain insight into debonding phenomena, various experimental and analytical investigations of the behavior of bonded FRP-to-concrete joints have been carried out. However, such studies have generally been limited to monotonic "static" loading conditions. The primary purpose of this paper is to propose a new methodology of determination of stiffness and degradation of stiffness of the interface between CFRP side face and concrete under cyclic loading. The test setup and supports are designed such that there is a direct shear at the FRP-to-concrete interface. In this paper, first, we describe the experimental setup and test parameters. Next experimental results for cyclic bond stress-slip behavior, mathematical formulations for stiffness of interface and its degradation as number of cycles increased are obtained and discussed.
机译:通过外部粘合的纤维增强聚合物FRPS加强钢筋混凝土结构是升级现有结构的有吸引力的技术。尽管以前的实验室调查表明,通过这种强化技术可以显着提高梁的剪切容量,但通过剥离FRP加固的过早失效通常可以限制其有效性。要深入了解剥离现象,已经进行了对粘结的FRP - 混凝土关节行为的各种实验和分析研究。然而,这种研究通常限于单调“静态”负载条件。本文的主要目的是提出一种新的方法论的循环侧面和混凝土在CFRP侧面和混凝土之间的刚度和刚度刚度的劣化方法。测试设置和支撑件设计成使得FRP到混凝土界面处存在直接剪切。在本文中,首先,我们描述了实验设置和测试参数。获得循环粘结应力滑动行为的下一个实验结果,获得界面刚度的数学制剂及其降解的循环次数增加,增加。

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