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Performance of circular concrete-filled fiber-reinforced polymer-steel composite tube columns under axial compression

机译:圆形混凝土纤维增强聚合物-钢复合管轴压性能

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A concrete-filled fiber-reinforced polymer-steel composite tube column consisting of inner concrete and an exterior fiber-reinforced polymer-steel tube was studied in this paper. A total of 22 specimens were tested under axial compression to investigate the performance of the circular concrete-filled fiber-reinforced polymer-steel composite tube columns. The main experimental parameters were the thickness of the steel tube, the number of fiber-reinforced polymer layers, the type of fiber-reinforced polymer, and the hybridization of fiber-reinforced polymer, in which basalt-fiber-reinforced polymer was used to manufacture concrete-filled fiber-reinforced polymer-steel composite tube columns and was compared with carbon fiber-reinforced polymer. The test results showed that local buckling of the steel tube can be suppressed and even prevented effectively with fiber-reinforced polymer strengthening, and the compressive strength of the concrete-filled fiber-reinforced polymer-steel composite tube specimens is enhanced by the external fiber-reinforced polymer confinement compared with that of the concrete-filled steel tube specimens. With the increase in the number of fiber-reinforced polymer layers or with a larger ultimate tensile strain in the fiber-reinforced polymer, the peak axial strain corresponding to fiber-reinforced polymer fracture increases accordingly. A new model that considers composite action was developed for strength prediction of concrete-filled fiber-reinforced polymer-steel composite tube columns, and the analytical results agree well with the experimental results.
机译:本文研究了一种由内部混凝土和外部纤维增强聚合物钢管组成的混凝土纤维增强聚合物钢管复合管柱。总共22个样品在轴向压缩下进行了测试,以研究圆形混凝土填充纤维增强聚合物-钢复合管柱的性能。主要的实验参数是钢管的厚度,纤维增强聚合物层的数量,纤维增强聚合物的类型以及纤维增强聚合物的杂化,其中玄武岩纤维增强聚合物被用于制造。填充混凝土纤维增强聚合物-钢复合管柱,并与碳纤维增强聚合物进行比较。测试结果表明,通过纤维增强的聚合物增强,可以抑制甚至有效地防止钢管的局部屈曲,并且通过外部纤维增强了混凝土填充的纤维增强的聚合物-钢复合管样品的抗压强度。与钢管混凝土试件相比,增强聚合物的约束。随着纤维增强聚合物层数的增加或纤维增强聚合物中的更大的极限拉伸应变,对应于纤维增强聚合物断裂的峰值轴向应变相应地增加。建立了考虑复合作用的新模型,用于预测纤维混凝土-钢管混凝土复合管柱的强度,其分析结果与实验结果吻合良好。

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