首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Hydration Water Dynamics in Tricalcium Silicate Pastes by Time-Resolved Incoherent Elastic Neutron Scattering
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Hydration Water Dynamics in Tricalcium Silicate Pastes by Time-Resolved Incoherent Elastic Neutron Scattering

机译:时间分辨非相干弹性中子散射的硅酸三钙膏水化水动力学

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The translational dynamics of the hydration water in tricalcium silicate, as well as the curing kinetics of the paste, have been investigated for the first time using neutron elastic backscattering; measurements. A detailed analytical model has been formulated to extract the most important features of the calcium silicate curing process. As the curing time passes, water reacts with the tricalcium silicate, forming amorphous calcium silicate hydrate and crystalline calcium hydroxide. Concurrently, the water translational dynamics slows down due to the increased confinement in the developing matrix. The time evolution of the self-diffusion constant for the hydration water shows a decrease of 1 order of magnitude after two days of curing. The presented results agree with recent molecular dynamics simulations and ~1H NMR results on similar systems.
机译:首次使用中子弹性反向散射研究了硅酸三钙中水化水的平移动力学以及糊剂的固化动力学。测量。制定了详细的分析模型以提取硅酸钙固化过程的最重要特征。随着固化时间的流逝,水与硅酸三钙反应,形成无定形硅酸钙水合物和结晶氢氧化钙。同时,由于在显影基质中的限制增加,水的平移动力学变慢。固化两天后,水化水的自扩散常数随时间的变化显示减少了1个数量级。提出的结果与最近的分子动力学模拟和在相似系统上的〜1 H NMR结果一致。

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