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Moment-Curvature Behavior of Glass Fiber-Reinforced Polymer Bar-Reinforced Normal-Strength Concrete and High-Strength Concrete Columns

机译:玻璃纤维增​​强高强混凝土和高强度混凝土柱的弯矩特性

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摘要

A numerical integration approach was developed to investigate the moment-curvature behavior of glass fiber-reinforced polymer (GFRP) bar-reinforred circular normal-strength concrete (NSC) and high-strength concrete (HSC) columns. The results obtained from the developed integration approach were validated with the experimental results of eight GFRP bar-reinforced circular concrete column specimens. Out of these eight specimens, four specimens were cast with NSC having a compressive strength of 37 MPa and four specimens were cast with HSC having a compressive strength of 85 MPa. A parametric study was carried out to investigate the e f fect of concrete compressive strength and GFRP longitudinal and transverse reinforcement ratios on the moment-curvature behavior of the GFRP bar-reinforced NSC and HSC circular columns under combined axial and flexural loads. The results of the parametric study indicate that increasing the concrete compressive strength or GFRP longitudinal reinforcement ratio leads to an increase in the bending moment capacity and a decrease in the ductility of GFRP bar-reinfOrred concrete columns. The confinement provided by the GFRP helixes (transverse rein forrement) improves both the bending moment capacity and the ductility of the GFRP bar-reinforced circular concrete columns. The improvement in the performance (bending moment and ductility) due to increasing the GFRP transverse reinforcement ratio was greater in the GFRP bar-reinforced NSC columns than in the GFRP bar-reinforced HSC columns.
机译:开发了一种数值积分方法来研究玻璃纤维增​​强聚合物(GFRP)棒增强圆形普通强度混凝土(NSC)和高强度混凝土(HSC)柱的弯矩曲率行为。从开发的集成方法获得的结果已通过8个GFRP钢筋圆混凝土柱样本的实验结果得到验证。在这八个样品中,四个样品用抗压强度为37 MPa的NSC铸造,四个样品用抗压强度为85 MPa的HSC铸造。进行了参数研究,研究了混凝土抗压强度和GFRP纵向和横向配比对组合轴向和弯曲荷载下GFRP钢筋NSC和HSC圆形圆柱的弯矩曲率行为的影响。参数研究的结果表明,增加混凝土的抗压强度或GFRP的纵向增强比会导致弯矩承载力的增加和GFRP钢筋混凝土柱的延性的降低。 GFRP螺旋(横向加固)提供的限制提高了GFRP筋钢筋混凝土圆柱的弯矩承载能力和延展性。由于GFRP筋增强的NSC柱比GFRP筋增强的HSC柱提高了GFRP横向增强比,因此性能(弯曲力矩和延展性)的改善更大。

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