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Strength properties of hybrid nylon-steel and polypropylene-steel fibre-reinforced high strength concrete at low volume fraction

机译:低体积分数尼龙-钢和聚丙烯-钢纤维增强高强度混杂混凝土的强度性能

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The strength properties of hybrid nylon-steel fibre-reinforced concrete were investigated in comparison to that of polypropylene-steel fibre-reinforced concrete, at the same volume fraction (0.5%). The content of the high performance macro structure steel fibres is at 0.4% volume fraction, and the content of micro nylon and polypropylene-fibres is at 0.1% volume fraction. The experimental results show that the compressive strength and splitting tensile strengths and modulus of rupture (MOR) properties of the nylon-steel fibre concrete improved by 3.2, 8.3 and 10.2%, respectively, over those of thepolypropylene-steel fibre concrete. On the impact resistance, the first-crack and failure strengths, and the percentage increase in the post first-crack blows improved more for the nylon-steel-fibre concrete than for its polypropylene-steel fibre concrete counterpart. These two forms of fibres work complimentarily and there is a synergy effect in the hybrid fibres system. The aforementioned listed improvements of the hybrid nylon-steel fibers register a higher tensile strength, possibly due to its better dispersion of concrete, and they are bond with mixture as well.
机译:在相同的体积分数(0.5%)下,与聚丙烯-钢纤维增强混凝土相比,研究了混合尼龙-钢纤维增强混凝土的强度性能。高性能宏观结构钢纤维的含量为0.4%(体积分数),微尼龙和聚丙烯纤维的含量为0.1%(体积分数)。实验结果表明,与聚丙烯-钢纤维混凝土相比,尼龙-钢纤维混凝土的抗压强度,劈裂抗拉强度和断裂模量(MOR)分别提高了3.2%,8.3%和10.2%。关于抗冲击性,尼龙-钢-纤维混凝土的抗冲击强度,初裂强度和破坏强度,以及后初裂的吹塑百分比提高比聚丙烯-钢纤维混凝土相当。这两种形式的纤维互补工作,并且在混合纤维系统中具有协同效应。上面列出的混合尼龙-钢纤维的改进具有较高的拉伸强度,这可能是由于其在混凝土中的分散性更好,并且它们还与混合物粘结。

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