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Dynamic Stress-Strain Behaviour of Steel Fiber Reinforced High-Performance Concrete with Fly Ash

机译:粉煤灰钢纤维增强高性能混凝土的动态应力-应变特性

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摘要

The addition of steel fibers into concrete mix can significantly improve the engineering properties of concrete. The mechanical behaviors of steel fiber reinforced high-performance concrete with fly ash (SFRHPFAC) are studied in this paper through both static compression test and dynamic impact test. Cylindrical and cube specimens with three volume fractions of end-hooked steel fibers with volume fraction of 0.5%, 1.0%, and 1.5% (39.25, 78.50, and 117.75kg/m~3) and aspect ratio of 64 are used. These specimens are then tested for static compression and for dynamic impact by split Hopkinson pressure bar (SHPB) at strain rate of 30-60 s~(-1). The results reveal that the failure mode of concrete considerably changes from brittle to ductile with the addition of steel fibers. The plain concrete may fail under low-strain-rate single impact whereas the fibrous concrete can resist impact at high strain rate loading. It is shown that strain rate has great influence on concrete strength. Besides, toughness energy is proportional to the fiber content in both static and dynamic compressions.
机译:在混凝土混合物中添加钢纤维可以显着改善混凝土的工程性能。本文通过静态压缩试验和动态冲击试验研究了粉煤灰钢纤维增强高性能混凝土的力学性能。使用圆柱状和立方状试样,其三个端部钢纤维的体积分数分别为0.5%,1.0%和1.5%(39.25、78.50和117.75kg / m〜3),纵横比为64。然后用分叉的霍普金森压力棒(SHPB)以30-60 s〜(-1)的应变速率测试这些样品的静态压缩和动态冲击。结果表明,随着钢纤维的加入,混凝土的破坏模式从脆性转变为韧性。普通混凝土在低应变率单次冲击下可能会失效,而纤维混凝土则在高应变率载荷下可以抵抗冲击。结果表明,应变速率对混凝土强度有很大的影响。此外,在静态和动态压缩中,韧性能均与纤维含量成正比。

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  • 来源
    《Advances in civil engineering》 |2012年第2012期|907431.1-907431.6|共6页
  • 作者单位

    Department of Civil and Structural Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, Selangor, 43600 Bangi, Malaysia;

    Department of Civil and Structural Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, Selangor, 43600 Bangi, Malaysia;

    Department of Civil and Structural Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, Selangor, 43600 Bangi, Malaysia;

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