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Contribution to the modeling of hydration and chemical shrinkage of slag-blended cement at early age

机译:有助于熔渣水泥早期水化和化学收缩的建模

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This paper presents a contribution to the modeling of the chemical shrinkage of the slag-blended cement paste (binder) at early age. Assuming that the chemical shrinkage is a direct result of hydration, the hydration modeling of slag-blended cement was studied by considering the interaction between the hydrations of blast furnace slag (BFS) and ordinary Portland cement. The reaction of BFS in the presence of calcium hydroxide CH (Portlandite) produced from the hydration of the cement was investigated. The kinetic hydration of cement was developed, and the volume phases in the cementitious material during the hydration process were calculated. The chemical shrinkage, which is the negative volume balance between the reactants and the products formed, is then calculated. In parallel with this numerical modeling, an experimental study was conducted to investigate the effect of slag's addition (0%, 30%, 50% and 80%) on the heat of hydration and chemical shrinkage at early age (maturation up to 7 days). The proposed hydration model incorporates the effect of following variables; the chemical composition of the binder, the fineness, the water to binder ratio (w/b), the curing time and the temperature.
机译:本文为熔渣水泥糊(粘结剂)在早期的化学收缩建模提供了帮助。假设化学收缩是水化的直接结果,则通过考虑高炉矿渣(BFS)与普通硅酸盐水泥的水化作用之间的相互作用,研究了矿渣掺合水泥的水化模型。研究了在水泥水合作用产生的氢氧化钙CH(Portlandite)存在下BFS的反应。开展了水泥的动态水化过程,计算了水化过程中胶结材料中的体积相。然后计算化学收缩率,该化学收缩率是反应物和形成的产物之间的负体积平衡。与该数值模型并行,进行了一项实验研究,研究了炉渣添加量(0%,30%,50%和80%)对早期(成熟期长达7天)的水化热和化学收缩的影响。 。建议的水合作用模型考虑了以下变量的影响;粘合剂的化学组成,细度,水与粘合剂的比例(w / b),固化时间和温度。

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