Hydration kinetics of cementitious supplies primarily based on low-field NMR and isothermal calorimetry: Fullerenes, Nanotubes and Carbon Nanostructures: Vol 0, No 0
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Hydration kinetics of cementitious supplies primarily based on low-field NMR and isothermal calorimetry: Fullerenes, Nanotubes and Carbon Nanostructures: Vol 0, No 0


Summary

The Krstulovic-Dabic (KD) hydration kinetic mannequin is commonly used to review the hydration mechanism of cement-based supplies. Primarily based on this mannequin, isothermal calorimetry is normally to review the hydration kinetics of cementitious supplies, and the obtained information can describe the hydration course of effectively. On this paper, low-field NMR was used to observe the hydration technique of cementitious supplies, and the outcomes have been in contrast with that obtained by isothermal calorimetry. The outcomes confirmed that KD mannequin was additionally appropriate for Low-field NMR. And the outcomes of the low-field NMR have been per these of the isothermal calorimetry, each proving that the hydration phases of the PC and C3S have been NG-I-D and NG-D, respectively. The distinction was that low-field NMR displayed a quicker hydration fee than isothermal calorimetry, which led to a shorter length of D course of. This phenomenon could also be attributable to the truth that low-field NMR (1H in free water) and isothermal calorimetry (hydration warmth) are primarily based on totally different sign sources, and the water consumption fee is quicker than warmth variation fee within the early hydration interval. In abstract, low-field displays excessive effectiveness in characterizing the hydration kinetic technique of cementitious supplies.

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