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NMR diffusion and relaxation studies during cement Hydration--A non-destructive approach for clarification of the mechanism of internal post curing of cementitious materials

机译:水泥水化过程中的NMR扩散和弛豫研究-一种非破坏性方法,用于澄清水泥质材料内部后固化的机理

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摘要

Internal post-curing of hardening cement pastes by addition of alginate spheres, which contain 98 percent of water, is studied by non-destructive ~(1)H NMR measurements of transverse relaxation time and self-diffusion. The onset and amount of water transition from the alginate gel used as additive with temporary delayed release of water to cement pastes was observed continuously during the dormant and accelerated period of cement hydration. During hydration, the water transition from the alginate into the cement matrix as well as the development of pore size is monitored quantitatively by studying the time dependence of characteristic peaks in the transverse relaxation time distribution. Comparison between samples without and with internal post curing shows that the addition of alginate gel does not influence the pore size in the micropore region. NMR diffusion studies demonstrate that the physically bound pore water has sufficient mobility to ensure homogeneous distribution of water from the alginate source into the surrounding cement matrix during the dormant and accelerated period.
机译:通过对横向弛豫时间和自扩散进行无损〜(1)H NMR测量,研究了通过添加含有98%水的藻酸盐球对硬化水泥浆进行内部后固化的方法。在水泥水化的休眠期和加速期连续观察到了从藻酸盐凝胶(用作添加剂)到水的临时延迟释放过程中水从藻酸盐凝胶转变的发生和数量。在水化过程中,通过研究横向弛豫时间分布中特征峰的时间依赖性,可以定量监测水从藻酸盐到水泥基质的过渡以及孔径的变化。不使用内部后固化和使用内部后固化的样品之间的比较表明,添加藻酸盐凝胶不会影响微孔区域的孔径。 NMR扩散研究表明,物理结合的孔隙水具有足够的迁移率,可确保在休眠和加速期间水从藻酸盐源均匀分布到周围的水泥基质中。

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