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Behavior of concrete columns reinforced with high-strength steel rebars under eccentric loading

机译:偏心荷载下高强度钢筋混凝土柱的受力性能

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摘要

In this study, high-strength steel (HSS) reinforcement with a yield stress of about 600MPa was used in reinforced concrete columns to reduce both the reinforcing bar congestion and the construction costs. For this purpose, 16 square concrete columns reinforced with either the conventional normal-strength steel (NSS) or HSS rebars were subjected to axial and eccentric compression loads. The primary test variables included longitudinal reinforcement with two strength grades, axial load eccentricities, two different concrete compressive strengths, and different longitudinal reinforcement ratios. The structural response of the columns reinforced with reduced HSS rebars (Grade 600) was compared with that of the columns reinforced with grade 420MPa rebars in terms of their load-carrying capacity, failure mechanism, axial force-bending moment (P-M) interaction, and ductility. Experimental results showed that although the amount of longitudinal steel reinforcement was reduced by about 34% in columns containing grade 600MPa rebars, their load-carrying capacity and P-M interaction diagrams were comparable to those of the reference columns containing conventional NSS rebars. It was also concluded that simultaneous use of high-strength rebars and high-strength concrete below a balanced point would lead to slightly higher values of ductility index (by up to 4%) than when normal concrete strength and conventional reinforcement steel rebars of Grade 420MPa are used.
机译:在这项研究中,屈服应力约为600MPa的高强度钢(HSS)钢筋被用于钢筋混凝土柱中,以减少钢筋的拥挤和施工成本。为此,用常规的普通强度钢(NSS)或HSS钢筋加固的16个方形混凝土柱承受轴向和偏心压缩载荷。主要测试变量包括具有两个强度等级的纵向钢筋,轴向载荷偏心率,两种不同的混凝土抗压强度以及不同的纵向钢筋比率。在承载能力,破坏机理,轴向力-弯矩(PM)相互作用以及承载力,承载力,破坏机理和抗拉强度方面,对采用减少HSS钢筋(等级600)的钢筋与采用420MPa等级钢筋的钢筋的结构响应进行了比较。延展性。实验结果表明,尽管在含有600MPa级螺纹钢的立柱中纵向钢筋的数量减少了约34%,但它们的承载能力和P-M相互作用图与包含常规NSS钢筋的参考柱相当。还得出结论,在平衡点以下同时使用高强度钢筋和高强度混凝土将导致比普通混凝土强度和传统420MPa级钢筋强度更高的延展性指数值(高达4%)。被使用。

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