首页> 外文期刊>Journal of Materials Science >INTERPRETATION OF THE IMPEDANCE SPECTROSCOPY OF CEMENT PASTE VIA COMPUTER MODELLING .3. MICROSTRUCTURAL ANALYSIS OF FROZEN CEMENT PASTE
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INTERPRETATION OF THE IMPEDANCE SPECTROSCOPY OF CEMENT PASTE VIA COMPUTER MODELLING .3. MICROSTRUCTURAL ANALYSIS OF FROZEN CEMENT PASTE

机译:通过计算机建模对水泥浆阻抗谱的解释3。冷冻水泥浆的微观结构分析

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The d.c. conductivity, sigma, and low-frequency relative dielectric constant, k, of Portland cement paste were monitored, using impedance spectroscopy, during cooling from room temperature down to -50 degrees C. Dramatic decreases in the values of sigma and k, as great as two orders of magnitude, occurred at the initial freezing point of the aqueous phase in the macropores and larger capillary pores. This result provides strong experimental support for the dielectric amplification mechanism, proposed in Part II of this series, to explain the high measured low-frequency relative dielectric constant of hydrating Portland cement paste. Only gradual changes in the electrical properties were observed below this sudden drop, as the temperature continued to decrease. The values of a and k of frozen cement paste, at a constant temperature of -40 degrees C, were dominated by properties of calcium-silicate-hydrate (C-S-H) and so increased with the degree of hydration of the paste, indicating a C-S-H gel percolation threshold at a volume fraction of approximately 15%-20%, in good agreement with previous predictions. Good agreement was found between experimental results and digital-image-based model computations of sigma at -40 degrees C. Freeze-thaw cycling caused a drop in the dielectric constant of paste in the unfrozen state, indicating that measurements of k could be useful for monitoring microstructural changes during freeze-thaw cycling and other processes that gradually damage parts of the cement paste microstructure. [References: 31]
机译:直流电在从室温冷却到-50摄氏度的过程中,使用阻抗光谱法监测了波特兰水泥浆的电导率,西格玛和低频相对介电常数k。西格玛和k值显着降低在大孔和较大毛细孔中水相的初始凝固点发生两个数量级的变化。该结果为该系列第二部分中提出的介电放大机理提供了有力的实验支持,以解释水合硅酸盐水泥浆的高测得的低频相对介电常数。随着温度持续降低,在此突然下降以下仅观察到电性能的逐渐变化。在-40摄氏度的恒定温度下,冷冻水泥浆的a和k值主要由水合硅酸钙(CSH)的性质决定,因此随浆化程度的增加而增加,表明CSH凝胶渗透阈值的体积分数约为15%-20%,与先前的预测非常吻合。在-40摄氏度下的sigma实验结果与基于数字图像的模型计算之间发现了很好的一致性。冻融循环导致未冻结状态下的糊料介电常数下降,这表明k的测量可能对监测冻融循环和其他过程中的微观结构变化,这些变化会逐渐破坏水泥浆微结构的一部分。 [参考:31]

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