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Analytical and numerical studies on hollow core slabs strengthened with hybrid FRP and overlay techniques

机译:混合FRP和覆盖技术加固空心板的分析和数值研究。

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The objective of this study is to understand the behaviour of hollow core slabs strengthened with FRP and hybrid techniques through numerical and analytical studies. Different strengthening techniques considered in this study are (i) External Bonding (EB) of Carbon Fiber Reinforced Polymer (CFRP) laminates, (ii) Near Surface Mounting (NSM) of CFRP laminates, (iii) Bonded Overlay (BO) using concrete layer, and (iv) hybrid strengthening which is a combination of bonded overlay and NSM or EB. In the numerical studies, three-dimensional Finite Element (FE) models of hollow core slabs were developed considering material and geometrical nonlinearities, and a phased nonlinear analysis was carried out. The analytical calculations were carried out using Response-2000 program which is based on Modified Compression Field Theory (MCFT). Both the numerical and analytical models predicted the behaviour in agreement with experimental results. Parametric studies indicated that increase in the bonded overlay thickness increases the peak load capacity without reducing the displacement ductility. The increase in FRP strengthening ratio increased the capacity but reduced the displacement ductility. The hybrid strengthening technique was found to increase the capacity of the hollow core slabs by more than 100% without compromise in ductility when compared to their individual strengthening schemes.
机译:这项研究的目的是通过数值和分析研究来了解用FRP和混合技术增强的空心板的性能。本研究中考虑的不同加固技术是(i)碳纤维增强聚合物(CFRP)层压板的外部粘结(EB),(ii)CFRP层压板的近表面安装(NSM),(iii)使用混凝土层的粘结覆盖层(BO) ,以及(iv)混合强化,是结合覆盖层与NSM或EB的组合。在数值研究中,考虑材料和几何非线性,开发了空心板的三维有限元模型,并进行了阶段性非线性分析。使用基于修改压缩场理论(MCFT)的Response-2000程序进行分析计算。数值模型和分析模型都预测了与实验结果一致的行为。参数研究表明,粘结覆盖层厚度的增加会增加峰值载荷能力,而不会降低位移延展性。 FRP增强比的增加增加了承载能力,但降低了位移延性。与单独的加固方案相比,发现采用混合加固技术可使空心板的容量增加100%以上,而不会延展延展性。

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