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Improving concrete underground mining pavements performance through the synergic effect of silica fume, nanosilica, and polypropylene fibers

机译:通过二氧化硅烟,纳米硅和聚丙烯纤维的协同作用改善混凝土地下采矿路面性能

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Concrete pavements for underground mining are in service under very aggressive exposure conditions (heavy loads and chemical attacks), which reduce their service life and affect mining productivity. Aiming to improve the concrete's performance, the combined use of silica fume, nanosilica, and polypropylene fibers was investigated. While each of these materials contributes independently to improving concrete performance, the similar chemistry of nanosilica and silica fume and the considerable workability loss by using each of these materials could negatively impact the concrete properties when used together. Therefore, it is necessary to demonstrate the synergy of using these three materials together, and quantify their relevance in the concrete response. In comparison to the control mix, the concrete mixes with the combined additions showed an average improvement of i) 17% of compressive strength, ii) 23% of splitting strength, and iii) 22% of flexural strength, iv) 200% of the surface resistivity, v) 212% of the abrasion resistance, and vi) 158% of less sulfate expansion. As the numerical modelling of the results indicated a statistically significant interaction between the independent variables, it is proposed that the silica fume, nanosilica, and fibers act synergically, enhancing the underground mining pavements. (C) 2021 Elsevier Ltd. All rights reserved.
机译:地下采矿的混凝土路面在非常激进的暴露条件下(重负荷和化学攻击),这减少了他们的使用寿命并影响采矿生产力。旨在提高混凝土的性能,研究了二氧化硅烟雾,纳米硅和聚丙烯纤维的合并使用。虽然这些材料中的每一种独立有助于改善混凝土性能,但是纳米硅和二氧化硅烟气的类似化学和通过使用这些材料的相当大的可加工性损失可能会在一起使用时对混凝土性能产生负面影响。因此,有必要展示在一起使用这三种材料的协同作用,并在混凝土响应中量化它们的相关性。与控制混合物相比,与组合添加的混凝土混合显示I)抗压强度的平均改善,II)分裂强度的23%,III)弯曲强度的22%,IV)200%表面电阻率,v)耐磨性的212%,vi的耐硫酸盐较少的158%。随着结果的数值建模表明了独立变量之间的统计学显着的相互作用,提出了二氧化硅烟雾,纳米硅和纤维协同作用,增强了地下采矿路面。 (c)2021 elestvier有限公司保留所有权利。

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