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Design limits for RC slabs strengthened with hybrid FRP-HPC retrofit system

机译:混合FRP-HPC改造系统加强了RC板的设计限制

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摘要

A polymeric hybrid composite system made of high-performance concrete (HPC) and an innovative car-bon/epoxy reinforced polymer (CFRP) unidirectional laminates was proposed as a retrofit system to enhance flexural strength and ductility of reinforced concrete (RC) slabs. The effectiveness of the proposed system was confirmed through experimental evaluation of three full-scale one-way slabs having two continuous spans. In this study, the results of the loading tests for the hybrid high-performance retrofit system are presented and discussed. Design limits to derive a flexural failure of a continuous RC slab strengthened with the hybrid retrofit system are extracted. Using the proposed design limits, the procedure of a flexural failure design for a continuous RC slab strengthened with the hybrid retrofit system is demonstrated with numerical examples for two types of the retrofit systems with respect to overlay strength. The flexural failure design limits can be extended for flexural and shear strengthening design with externally bonded FRP to ensure flexure failure for a continuous flexural members.
机译:提出了一种由高性能混凝土(HPC)和创新的碳/环氧增强聚合物(CFRP)单向层压材料制成的聚合物混合复合材料系统,作为一种增强系统,以增强钢筋混凝土(RC)板的抗弯强度和延展性。通过对三个连续跨度的三个全尺寸单向平板进行实验评估,证实了所提出系统的有效性。在这项研究中,提出并讨论了混合动力高性能改装系统的载荷测试结果。提取了通过混合改造系统加强的连续RC板的弯曲破坏的设计极限。使用建议的设计极限,用混合改造系统加固的连续钢筋混凝土板的弯曲破坏设计程序,通过两种类型的改造系统的覆盖强度实例进行了演示。弯曲破坏设计极限可以扩展到外部结合FRP的弯曲和抗剪加固设计,以确保连续弯曲构件的弯曲破坏。

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