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Experimental and Numerical Investigation of the FRP Shear Mechanism for Concrete Sandwich Panels

机译:混凝土夹芯板玻璃钢剪力机理的试验与数值研究

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This paper investigates the composite action of 46 segments representing precast concrete sandwich panels (PCSPs) using a fiber-reinforced polymer [FRP; specifically, a carbon fiber-reinforced polymer (CFRP)] grid/rigid foam as a shear mechanism. The experimental aspect of the research reported in this paper examined the effect of various parameters believed to affect the shear flow strength for this CFRP grid/foam system. The parameters that were considered are the spacing between vertical lines of CFRP grids and the thickness of the rigid foam. Results of the experimental aspect of the research reported in this paper indicated that increasing the spacing between vertical lines of CFRP grid increase the overall shear flow strengths due to the increase of the bonded contact area of the rigid foam to the concrete surface. However, the overall shear stresses were decreased due to the increase of this interface surface area. Test results also indicated that increasing the rigid foam thickness decreases the overall shear flow strength when compared with the same quantity of CFRP grid spacing. A nonlinear three-dimensional (3D) FEM analysis was performed to model the behavior of the tested segments and to study the behavior of PCSPs. Results of FEM analysis were in good agreement with the experimental results. A design equation was developed to determine the shear flow strengths for the given CFRP grid/foam systems. The parametric study of the research reported in this paper was performed to predict shear flow strength of different FRP materials, rigid foam thickness, and spacing between vertical lines of the grid.
机译:本文研究了使用纤维增强聚合物[FRP]代表预制混凝土夹芯板(PCSP)的46段的复合作用。具体而言,碳纤维增强聚合物(CFRP)]网格/刚性泡沫作为剪切机制。本文报道的研究的实验方面检查了各种参数的影响,这些参数被认为会影响该CFRP网格/泡沫系统的剪切流动强度。考虑的参数是CFRP网格垂直线之间的间距和硬质泡沫的厚度。本文报道的研究实验结果表明,由于硬质泡沫塑料与混凝土表面的接触面积增加,增加CFRP网格垂直线之间的间距可提高整体剪切流强度。但是,由于该界面表面积的增加,总剪切应力降低了。测试结果还表明,与相同数量的CFRP网格间距相比,增加硬质泡沫厚度会降低整体剪切流动强度。进行了非线性三维(3D)有限元分析,以模拟测试段的行为并研究PCSP的行为。有限元分析结果与实验结果吻合良好。开发了一个设计方程来确定给定CFRP网格/泡沫系统的剪切流强度。进行了本文报道的研究的参数研究,以预测不同FRP材料的剪切流动强度,硬质泡沫厚度以及网格垂直线之间的间距。

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