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Influence of silica fume on properties of fresh and hardened ultra-high performance concrete based on alkali-activated slag

机译:基于碱活性炉渣的硅粉对新鲜和硬化超高性能混凝土性能的影响

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摘要

Based on the principles of ultra-high performance concrete (UHPC) a Portland cement free, alkali-activated material was optimized in order to enhance strength and durability. The formulation is based on ground granulated blast furnace slag and as an activator a combination of potassium water-glass and potassium hydroxide was used. Furthermore, silica fume and metakaolin as inorganic fines were used to increase the packing density of the mixture. Quartz sand (0-2 mm) and quartz powder were added as aggregates. The results comprise an enhancement of the rheological properties by the stepwise increase of silica fume. A w/b ratio of less than 0.25 was realised using a certain mixing procedure with a high intensity mixer. The compressive strength reaches values comparable with the strength range of an UHPC. The already low capillary porosity could further be decreased by the substitution of slag with a small amount of metakaolin, which is leading to a higher polymerisation degree due to an incorporation of aluminium in the reaction products. The enhanced polymerisation degree was estimated by FTIR and XRD. Although no effective superplasticizer can be used in this high alkaline material, the low w/b ratio and a good workability can be achieved by using certain amounts of silica fume.
机译:基于超高性能混凝土(UHPC)的原理,优化了碱活化材料,以提高强度和耐用性。制剂基于地面粒状高炉炉渣,作为活化剂,使用钾玻璃和氢氧化钾的组合。此外,使用二氧化硅烟雾和偏塔洛林作为无机粉末来增加混合物的填充密度。将石英砂(0-2 mm)和石英粉作为聚集体加入。结果包括通过逐步增加二氧化硅烟雾的增强流变性质。使用具有高强度混合器的一定的混合过程来实现少于0.25的W / B比。抗压强度达到与UHPC的强度范围相当的值。通过用少量甲酚的塑料取代炉渣可以进一步降低已经低的毛细血管孔隙,这导致在反应产物中掺入铝的聚合程度较高。通过FTIR和XRD估算增强的聚合度。尽管在该高碱性材料中没有使用有效的超塑化剂,但是通过使用一定量的二氧化硅烟气,可以实现低w / B比和良好的可加工性。

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