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Simple Design Methodology for R.C. Slabs by Hybrid Reinforcing of Steel Rebars and Uniaxial or Triaxial Geogrids

机译:r.c的简单设计方法。 通过钢钢筋和单轴或三轴地质格栅的混合增强板坯

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This paper’s objective is to provide simple design relations for the reinforced concrete slabs by a hybrid reinforcing of uniaxial or triaxial geogrids in addition to steel rebars. We hope this can provide guidance for further researchers to estimate the flexural bending capacity of the concrete slabs, the necessary grade of uniaxial or triaxial geogrids, and the necessary count of uniaxial or triaxial geogrids’ layers by conducting first-principles analytical, quantitative analyses for a previously published concrete slabs’ experimental data of reinforced concrete slabs by hybrid reinforcing of steel rebars and uniaxial or triaxial geogrids. Throughout this paper, simple design relations were added to estimate the concrete slabs’ experimental moment at the post-peak load based on the assumption that the uniaxial or triaxial geogrids’ tensile force (as concrete slab’s reinforcement) is equal to its peak tensile strength (obtained by the experimental axial tensile test). This resulted in a variance that frequently has a range of ±10% when compared with the actual experimental data. For more accuracy, simple design relations were added to estimate the uniaxial or triaxial geogrids’ characteristic tensile force at the post-peak load, which resulted in an estimated concrete slab’s experimental moment at the post-peak load with a variance that frequently has a range of ±5% when compared with the actual experimental data.
机译:本文的目的是通过钢钢筋除了单轴或三轴土工格栅的混合增强来提供钢筋混凝土板的简单设计关系。我们希望这可以为进一步研究人员提供指导,以估算混凝土板的弯曲弯曲能力,单轴或三轴地质格栅的必要等级,以及通过进行第一原理进行分析,定量分析来实现单轴或三轴地质格栅层的必要计数通过钢钢筋和单轴或三轴地质格栅的混合增强,先前公布了钢筋混凝土板的混凝土板的实验数据。在本文中,添加了简单的设计关系,以估计基于单轴或三轴土工格栅的拉伸力(作为混凝土板的增强)等于其峰抗拉强度(如混凝土板)的峰值载荷后峰值负荷在后峰值负荷下的混凝土板的实验力矩通过实验轴向拉伸试验获得)。与实际实验数据相比,这导致频率通常在±10%范围内的方差。为了更准确,增加了简单的设计关系,以估计在后峰值负荷下的单轴或三轴土工格栅的特征拉力,这导致估计的混凝土板在后峰值负荷的实验力矩,其方差通常具有范围。与实际实验数据相比,±5%。

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