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Axial compressive behaviour of circular CFFT: Experimental database and design-oriented model

机译:圆形CFFT的轴向压缩行为:实验数据库和面向设计的模型

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Concrete Filled Fibre Reinforced Polymer Tube (CFFT) for new columns construction has attracted significant research attention in recent years. The CFFT acts as a formwork for new columns and a barrier to corrosion accelerating agents. It significantly increases both the strength capacity (Strength enhancement ratio) and the ductility (Strain enhancement ratio) of reinforced concrete columns. In this study, based on predefined selection criteria, experimental investigation results of 134 circular CFFT columns under axial compression have been compiled and analysed from 599 CFFT specimens available in the literature. It has been observed that actual confinement ratio (expressed as a function of material properties of fibres, diameter of CFFT and compressive strength of concrete) has significant influence on the strength and ductility of circular CFFT columns. Design oriented models have been proposed to compute the strength and strain enhancement ratios of circular CFFT columns. The proposed strength and strain enhancement ratio models have significantly reduced Average Absolute Error (AAE), Mean Square Error (MSE), Relative Standard Error of Estimate (RSEE) and Standard Deviation (SD) as compared to other available strength and strain enhancement ratios of circular CFFT column models. The predictions of the proposed strength and strain enhancement ratio models match well with the experimental strength and strain enhancement ratios investigation results in the compiled database.
机译:近年来,用于新型柱构造的混凝土填充纤维增强聚合物管(CFFT)引起了重要的研究关注。 CFFT充当新色谱柱的模板,并充当腐蚀促进剂的屏障。它显着提高了钢筋混凝土柱的强度能力(强度增强比)和延性(应变增强比)。在这项研究中,基于预定的选择标准,已经对134个圆形CFFT柱在轴向压缩下的实验研究结果进行了汇总,并从599个CFFT标本中进行了分析。已经观察到,实际的约束比(表示为纤维的材料特性,CFFT的直径和混凝土的抗压强度的函数)对圆形CFFT柱的强度和延展性具有重大影响。已经提出了面向设计的模型来计算圆形CFFT柱的强度和应变增强比。与其他可用的强度和应变增强比相比,建议的强度和应变增强比模型显着降低了平均绝对误差(AAE),均方误差(MSE),相对标准估计误差(RSEE)和标准偏差(SD)。循环CFFT列模型。所建议的强度和应变增强比模型的预测与已编译数据库中的实验强度和应变增强比研究结果非常吻合。

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