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Numerical Evaluations of Functionally Graded RC Slabs

机译:功能梯度钢筋混凝土板的数值评估

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Nowadays, using fibrous materials is used widely in strengthening applications such as cross-section enlargement and using functionally graded reinforced concrete. Functionally graded reinforced concrete is used as multireinforced concrete layers that can be reinforced by different fiber types. The objective of this research was to address the structural benefits of functionally graded concrete materials by performing analytical simulations. In order to achieve this purpose, in the first stage of this study, three functionally graded reinforced concretes by steel and polypropylene (PP) were experimentally tested under flexural loading. Inverse analysis was applied to obtain the used material properties of reinforced concrete by FEMIX software. After obtaining the material properties, to assess the performance of proposed slabs, some other cases were proposed and numerically evaluated under flexural and shear loading. The results showed that increasing steel fiber in reinforced entire cross section led to achieve better shear and flexural performance while the best performance of reinforced functionally graded slabs was achieved for slab at 1% fiber content. In the second stage, nineteen reinforced functionally graded RC slabs with steel bars were simulated and assessed and some other cases were considered which were not experimentally tested.
机译:如今,使用纤维材料被广泛用于加强应用,例如横截面扩大和使用功能梯度混凝土。功能梯度钢筋混凝土用作可以通过不同纤维类型进行增强的多层钢筋混凝土层。这项研究的目的是通过执行分析模拟来解决功能梯度混凝土材料的结构优势。为了达到这个目的,在本研究的第一阶段,在弯曲载荷下对三种由钢和聚丙烯(PP)制成的功能梯度钢筋混凝土进行了试验测试。通过FEMIX软件进行反分析,以获得钢筋混凝土的使用材料性能。在获得材料特性后,为了评估所提出的平板的性能,提出了一些其他情况,并在弯曲和剪切载荷下进行了数值评估。结果表明,在整个横截面上增加钢纤维可以实现更好的剪切和挠曲性能,而在纤维含量为1%的情况下,增强功能梯度板的性能最佳。在第二阶段,模拟和评估了19个带有钢筋的功能梯度钢筋混凝土板,并考虑了其他一些未经实验测试的情况。

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