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Porous concrete with optimum fine aggregate and fibre for improved strength

机译:多孔混凝土,具有最佳精细聚集体和纤维,提高强度

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Pervious concrete pavements are the need of the day to avoid urban flooding and to facilitate ground water recharge. However, the strength of pervious or porous concrete is considerably less compared to conventional concrete. In this experimental investigation, an effort is made to improve the strength of pervious concrete by adopting fibres and a small amount of fine aggregate. A porous concrete with cement to aggregate ratio of 1:5 and a water-powder ratio of 0.4 is adopted. 30% of the cement is replaced by cementitious material ground granulated blast furnace slag (GGBS) for better strength and workability. Recron fibres at a dosage of 0.5, 1.0 and 1.5% by weight of cement were included to improve the impact strength. Since concrete pavements are subjected to impact loads, the impact strength was also calculated by "Drop ball method" in addition to compressive strength. The effect of fine aggregate and recron fibres on workability, porosity, compressive and impact strength was studied. The investigations have shown that 20% inclusion of fine aggregate and 1.5% recron fibres by weight of cement give better strength with an acceptable range of porosity.
机译:透水的混凝土路面是当天的需求,以避免城市洪水,并促进地下水充电。然而,与常规混凝土相比,透水或多孔混凝土的强度远小得多。在这种实验研究中,通过采用纤维和少量细骨料来提高渗透混凝土的强度。采用水泥的多孔混凝土,其聚集比为1:5和水粉比为0.4。 30%的水泥被胶凝材料造粒颗粒高炉渣(GGBS)取代,以更好的强度和可加工性。包括0.5,1.0-1.0和1.5重量%的水泥剂的荧光纤维,以改善冲击强度。由于混凝土路面经受冲击载荷,因此除了抗压强度之外还通过“滴球方法”计算冲击强度。研究了精细聚集体和荧光纤维对可加工性,孔隙率,压缩和冲击强度的影响。该研究表明,通过水泥重量的细骨料包含细骨料和1.5%荧光纤维的20%,具有可接受的孔隙率的更好的强度。

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