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An Experimental Study on the Ductility and Flexural Toughness of Ultrahigh-Performance Concrete Beams Subjected to Bending

机译:超高性能混凝土梁受弯时的延性和挠曲韧性的试验研究

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摘要

Ultrahigh-performance concrete (UHPC) and high-strength concrete (HSC) are currently widely used because of their distinct superior properties. Thus, a comprehensive comparison of the flexural behavior of UHPC and HSC beams is presented in this study. Nine UHPC beams and three HSC beams were subjected to pure bending tests to investigate the effect of various reinforcement ratios and steel fiber volume contents on the cracking and failure patterns, load-deflection behavior, ductility, and flexural toughness of these beams. The addition of steel fibers in the UHPC improved the energy absorption capacity of the beams, causing the UHPC beams to fail via rebar fracture. The deflection and curvature ductility indices were determined and compared in this study. The ductility indices of the HSC beam tended to decrease sharply as the rebar ratio increased, whereas those of the UHPC beam did not show a clear trend with respect to the rebar ratio. In addition, a comparison between the results in this study and the results from previous studies was performed. In this study, the addition of steel fiber contents up to 1.5% in UHPC increased the load capacity, ductility, and flexural toughness of the UHPC beams, whereas the addition of a steel fiber content of 2.0% did not significantly increase the ductility or flexural toughness of the UHPC beams.
机译:目前,超高性能混凝土(UHPC)和高强度混凝土(HSC)由于其独特的优越性能而被广泛使用。因此,本研究对UHPC和HSC梁的弯曲行为进行了全面比较。对9根UHPC梁和3根HSC梁进行了纯弯曲试验,以研究各种增强比和钢纤维体积含量对这些梁的破裂和破坏模式,载荷挠度,延性和挠曲韧性的影响。在UHPC中添加钢纤维提高了梁的能量吸收能力,导致UHPC梁由于钢筋断裂而失效。确定并比较了挠度和曲率延展性指标。 HSC梁的延展性指数倾向于随钢筋比率的增加而急剧下降,而UHPC梁的延展性指数并未显示出明显的钢筋比率趋势。此外,在这项研究的结果和以前的研究结果之间进行了比较。在这项研究中,在UHPC中添加高达1.5%的钢纤维含量会增加UHPC梁的承载能力,延展性和抗弯韧性,而添加2.0%的钢纤维含量不会显着增加延性或挠曲性UHPC梁的韧性。

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