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首页> 外文期刊>Journal of materials in civil engineering >Impact Resistance and Mechanical Properties of Self-Consolidating Rubberized Concrete Reinforced with Steel Fibers
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Impact Resistance and Mechanical Properties of Self-Consolidating Rubberized Concrete Reinforced with Steel Fibers

机译:钢纤维增强自固性橡胶混凝土的抗冲击性和力学性能

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摘要

This study evaluates the impact resistance and mechanical properties of a number of developed self-consolidating rubberized concrete (SCRC) mixtures reinforced with steel fibers (SFs). In this research, SFs were used to compensate for the reduction in tensile and flexural strength that resulted from adding high volumes of crumb rubber (CR). SFs were also used to exploit the beneficial interaction between SFs and CR to develop low-density concrete with higher impact resistance. The experimental variables were different replacement levels of fine aggregate volume by CR (0-40%), binder content (550-600 kg/m~3), SF volume fractions (0, 0.35, 0.5, 0.75, and 1%), and size of SFs. Tests included fresh properties, compressive strength, splitting tensile strength (STS), flexural strength (FS), and impact loading (drop-weight on cylindrical specimens and flexural impact loading on small-scale beams). The results indicated that adding CR to concrete improved the impact energy absorption and ductility, whereas the mechanical properties decreased as the percentage of CR increased. Using SFs can greatly increase the impact resistance of SCRC and compensate for the reduction in STS and FS that resulted from the addition of CR. However, the high blockage in the L-box test limited the possible combination of SFs and CR in SCRC mixtures. Since passing ability was not a factor in the development of vibrated rubberized concrete (VRC), it was possible to combine higher volumes of CR and SFs safely in VRC, achieving more reductions in self-weight and improvements in the STS, FS, ductility, and impact resistance.
机译:这项研究评估了许多开发的用钢纤维(SFs)增强的自固式橡胶混凝土(SCRC)混合物的抗冲击性和力学性能。在这项研究中,SF用于补偿因添加大量的碎胶(CR)而引起的拉伸强度和弯曲强度的降低。 SF还被用于开发SF和CR之间的有益相互作用,从而开发出具有更高抗冲击性的低密度混凝土。实验变量是不同的替换细骨料体积的CR(0-40%),粘合剂含量(550-600 kg / m〜3),SF体积分数(0、0.35、0.5、0.75和1%), SF的大小。测试包括新鲜性能,抗压强度,抗拉强度(STS),抗弯强度(FS)和冲击载荷(圆柱试样的落锤重量和小梁的弯曲冲击载荷)。结果表明,在混凝土中添加CR可以改善冲击能量的吸收和延展性,而力学性能则随着CR百分比的增加而降低。使用SF可以大大提高SCRC的抗冲击性,并补偿因添加CR而导致STS和FS的降低。但是,L-box试验的高阻滞性限制了SCRC混合物中SF和CR的可能组合。由于通过能力不是振动橡胶混凝土(VRC)的发展因素,因此可以在VRC中安全地结合大量的CR和SF,从而实现自重的进一步降低以及STS,FS,延展性,和抗冲击性。

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  • 来源
    《Journal of materials in civil engineering》 |2017年第1期|04016193.1-04016193.14|共14页
  • 作者单位

    Faculty of Engineering and Applied Science, Memorial Univ. of Newfoundland, St. John's, NF, Canada A1B 3X5;

    Faculty of Engineering and Applied Science, Memorial Univ. of Newfoundland, St. John's, NF, Canada A1B 3X5;

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