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Effect of particle packing and fly ash on performance of ordinary Portland cement/anhydrite-activated ground-granulated blast-furnace slag

机译:颗粒填料和粉煤灰对普通硅酸盐水泥/硬石膏活化的粒状高炉矿渣性能的影响

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摘要

A common practice to produce concrete with a lowered CO2 embodiment is to use high levels of supplemental cementitious materials (SCMs), such as slag and fly ash, in place of portland cement, which is an economical and low-cost procedure. However, problems with activation arise that lead to low strength development, especially at an early age. This paper is focused on the influence of optimizing particle packing, which would decrease the cement/aggregate ratio while optimizing the space in the cement matrix; and on the effect of different fly ashes on the strength development of ordinary portland cement (OPC)/anhydrite-activated ground-granulated blast-furnace slag (GGBFS) cement. The optimized particle packing demonstrated to have a significant impact on the mechanical properties, both at early and late compressive strengths, compared with the nonpacking compositions. Substitution of fly ash for ultrafine aggregates significantly affected the mechanical properties, as well as the hydrates formed during the hydration process, depending on the fly ash properties.
机译:生产具有降低的CO2含量的混凝土的常见做法是使用高含量的辅助胶结材料(SCM),例如矿渣和粉煤灰代替硅酸盐水泥,这是一种经济且低成本的方法。然而,激活问题出现,导致强度降低,特别是在早期。本文主要关注优化颗粒堆积的影响,这将降低水泥/骨料比,同时优化水泥基体中的空间。以及不同粉煤灰对普通波特兰水泥(OPC)/硬石膏活化的地面造粒高炉矿渣(GGBFS)水泥强度发展的影响。与未填充的组合物相比,优化的颗粒堆积在早期和后期的抗压强度上均表现出对机械性能的重大影响。用粉煤灰替代超细团聚体会显着影响机械性能以及水合过程中形成的水​​合物,具体取决于粉煤灰的性能。

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