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Effect of temperature on the pore solution, microstructure and hydration products of Portland cement pastes

机译:温度对硅酸盐水泥浆体孔隙溶液,微结构和水合产物的影响

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摘要

The effect of temperature on the hydration products and the composition of the pore solution are investigated for two Portland cements from 5 to 50 deg C. Increased temperature leads to an initially fast hydration and a high early compressive strength. At 40 and 50 deg C, the formation of denser C-S-H, a more heterogeneous distribution of the hydration products, a coarser porosity, a decrease of the amount of ettringite as well as the formation of very short ettringite needles has been observed. At 50 deg C, calcium monosulphoaluminate has formed at the expenses of ettringite. In addition, the amount of calcium monocarboaluminate present seems to decrease. The composition of the pore solution mirrors the faster progress of hydration at higher temperatures. After 150 days, however, the composition of the pore solution is similar for most elements at 5, 20 and 50 deg C. Exceptions are the increased sulphate concentrations and the slightly lower Al and Fe concentrations at 50 deg C.
机译:研究了温度对5到50摄氏度的两种波特兰水泥的水合产物和孔隙溶液组成的影响。温度升高会导致初期快速水合和较高的早期抗压强度。在40和50摄氏度时,观察到形成较稠密的C-S-H,水合产物分布更不均匀,孔隙率更大,钙矾石数量减少以及非常短的钙矾石针状物的形成。在50℃下,以钙矾石为代价形成了单磺铝酸钙。另外,似乎存在单碳铝酸钙的量减少。孔溶液的组成反映了在较高温度下水化过程的加快。但是,在150天后,在5、20和50摄氏度时,大多数元素的孔溶液组成相似。例外是在50摄氏度时硫酸盐浓度增加而Al和Fe浓度略低。

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