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Effect of Gypsum on the Early Hydration of Cubic and Na-Doped Orthorhombic Tricalcium Aluminate

机译:石膏对立方和钠掺杂正交晶铝酸三钙早期水化的影响

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摘要

The tricalcium aluminate (C3A) and sulfate content in cement influence the hydration chemistry, setting time and rheology of cement paste, mortar and concrete. Here, in situ experiments are performed to better understand the effect of gypsum on the early hydration of cubic (cub-)C3A and Na-doped orthorhombic (orth-)C3A. The isothermal calorimetry data show that the solid-phase assemblage produced by the hydration of C3A is greatly modified as a function of its crystal structure type and gypsum content, the latter of which induces non-linear changes in the heat release rate. These data are consistent with the in situ X-ray diffraction results, which show that a higher gypsum content accelerates the consumption of orth-C3A and the subsequent precipitation of ettringite, which is contrary to the cub-C3A system where gypsum retarded the hydration rate. These in situ results provide new insight into the relationship between the chemistry and early-age properties of cub- and orth-C3A hydration and corroborate the reported ex situ findings of these systems.
机译:水泥中的铝酸三钙(C3A)和硫酸盐含量会影响水泥浆,砂浆和混凝土的水化化学,凝结时间和流变性。在这里,进行原位实验以更好地了解石膏对立方(cub-)C3A和Na掺杂的正交晶(orth-)C3A的早期水合的影响。等温量热法数据表明,由C3A水化产生的固相组合随其晶体结构类型和石膏含量的变化而大大改变,后者引起了放热率的非线性变化。这些数据与原位X射线衍射结果一致,后者表明较高的石膏含量会加速消耗Orth-C3A和随后的钙矾石沉淀,这与cub-C3A系统(其中石膏阻碍了水合速率)相反。这些原位结果为立方和邻位C3A水合的化学性质与早期年龄之间的关系提供了新的见识,并证实了这些系统的已报道的异位发现。

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