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Some Issues of Shrinkage-Reducing Admixtures Application in Alkali-Activated Slag Systems

机译:减缩掺合剂在碱活化矿渣系统中应用的若干问题

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摘要

Significant drying shrinkage is one of the main limitations for the wider utilization of alkali-activated slag (AAS). Few previous works revealed that it is possible to reduce AAS drying shrinkage by the use of shrinkage-reducing admixtures (SRAs). However, these studies were mainly focused on SRA based on polypropylene glycol, while as it is shown in this paper, the behavior of SRA based on 2-methyl-2,4-pentanediol can be significantly different. While 0.25% and 0.50% had only a minor effect on the AAS properties, 1.0% of this SRA reduced the drying shrinkage of waterglass-activated slag mortar by more than 80%, but it greatly reduced early strengths simultaneously. This feature was further studied by isothermal calorimetry, mercury intrusion porosimetry (MIP) and scanning electron microscopy (SEM). Calorimetric experiments showed that 1% of SRA modified the second peak of the pre-induction period and delayed the maximum of the main hydration peak by several days, which corresponds well with observed strength development as well as with the MIP and SEM results. These observations proved the certain incompatibility of SRA with the studied AAS system, because the drying shrinkage reduction was induced by the strong retardation of hydration, resulting in a coarsening of the pore structure rather than the proper function of the SRA.
机译:明显的干燥收缩率是碱活化矿渣(AAS)广泛应用的主要限制之一。很少有先前的工作表明可以通过使用减缩剂(SRA)来降低AAS干燥缩水率。但是,这些研究主要集中在基于聚丙二醇的SRA上,而正如本文所示,基于2-甲基-2,4-戊二醇的SRA的行为可能会有显着差异。尽管0.25%和0.50%对AAS性能影响不大,但该SRA的1.0%将水玻璃活化矿渣砂浆的干燥收缩率降低了80%以上,但同时大大降低了早期强度。通过等温量热法,压汞法(MIP)和扫描电子显微镜(SEM)进一步研究了此功能。量热实验表明,1%的SRA修饰了诱导前期的第二个峰,并使主水合峰的最大值延迟了几天,这与观察到的强度发展以及MIP和SEM结果非常吻合。这些观察结果证明了SRA与所研究的AAS系统存在一定的不相容性,因为干燥收缩的减少是由于强烈的水合作用引起的,从而导致孔结构变粗而不是SRA的正常功能。

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