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研究了宽时间和长度尺度下硬化水泥浆体中受阻的水流动。

Hindered water motions in hardened cement pastes investigated over broad time and length scales.

机构信息

Helmholtz-Zentrum Berlin fur Materialien und Energie GmbH, Glienicker Strasse 100, D-14109 Berlin, Germany.

出版信息

ACS Appl Mater Interfaces. 2009 Oct;1(10):2154-62. doi: 10.1021/am900332n.

Abstract

We investigated the dynamics of confined water in different hydrated cement pastes with minimized contributions of capillary water. It was found that the water motions are extremely reduced compared to those of bulk water. The onset of water mobility, which was modified by the local environment, was investigated with elastic temperature scans using the high-resolution neutron backscattering instrument SPHERES. Using a Cauchy-Lorenz distribution, the quasi-elastic signal observed in the spectra obtained by the backscattering spectrometer was analyzed, leading to the identification of rotational motions with relaxation times of 0.3 ns. Additionally, neutron spin echo (NSE) spectroscopy was used to measure the water diffusion over the local network of pores. The motions observed in the NSE time scale were characterized by diffusion constants ranging from 0.6 to 1.1 x 10(-9) m(2) s(-1) most likely related to water molecules removed from the interface. In summary, our results indicate that the local diffusion observed in the gel pores of hardened cement pastes is on the order of that found in deeply supercooled water. Finally, the importance of the magnetic properties of cement pastes were discussed in relation to the observation of a quasi-elastic signal on the dried sample spectra measured using the time-of-flight spectrometer.

摘要

我们研究了不同水合水泥浆中受限水的动力学,最大限度地减少了毛细管水的贡献。与体相水相比,发现水的运动大大减少了。我们使用高分辨率中子背散射仪器 SPHERES 通过弹性温度扫描来研究由局部环境修饰的水迁移的起始。使用 Cauchy-Lorenz 分布,对背散射光谱仪获得的光谱中的准弹性信号进行了分析,确定了弛豫时间为 0.3 ns 的旋转运动。此外,还使用中子自旋回波(NSE)光谱法来测量局部孔网络中的水扩散。在 NSE 时间尺度上观察到的运动特征是扩散常数在 0.6 到 1.1 x 10(-9) m(2) s(-1)之间,这很可能与从界面上除去的水分子有关。总之,我们的结果表明,在硬化水泥浆的凝胶孔中观察到的局部扩散与在深度过冷水中发现的扩散相当。最后,讨论了水泥浆的磁性质的重要性,这与在飞行时间光谱仪上测量干燥样品光谱时观察到的准弹性信号有关。

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