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Effect of structurally different aluminosilicates on early-age hydration of calcium aluminate cement depending on temperature

机译:不同温度下结构不同的铝硅酸盐对铝酸钙水泥早期水化的影响

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摘要

The work is concerned with the effect of two kinds of aluminosilicate addition with zeolitic and non-zeolitic structure on early-age hydration of calcium aluminate cement at different curing temperatures. The hydration kinetics was examined by conductometry and the formed hydrates were recognized by thermal analysis, X-ray diffraction and FTIR spectroscopy. In the conductometric investigations a specific cell was designed to examine the setting and hardening of cement paste by simultaneous monitoring electrical conductivity and internal temperature versus time.It was found that the studied aluminosilicates have a different interaction mechanism in the induction stage and their influence on the kinetics of the hydration process varies with temperature. The nonzeolitic addition, regardless of the curing temperature, acts as an accelerator but the zeolitic, depending on the temperature, acts as a retarder or an accelerator of setting and hardening of calcium aluminate cement. The effect was mainly attributed to the different structure of the aluminosilicates. It was observed that both mineral additions reduce the self-heating and thus can prevent the hydrogarnet formation already during early hydration process. However, the initially formed hydration products depend principally on the temperature than on the used amount of the aluminosilicates. (C) 2019 Elsevier Ltd. All rights reserved.
机译:该工作涉及两种沸石和非沸石结构的铝硅酸盐的添加对不同固化温度下铝酸钙水泥早期水化的影响。通过电导测定法检查水合动力学,并通过热分析,X射线衍射和FTIR光谱识别形成的水合物。在电导率研究中,通过同时监测电导率和内部温度随时间变化,设计了一个特定的单元来检查水泥浆的凝结和硬化。发现所研究的铝硅酸盐在诱导阶段具有不同的相互作用机理,并且它们对硅酸盐的影响水合过程的动力学随温度而变化。不论固化温度如何,非沸石添加物都可作为促进剂,而取决于温度,沸石可作为铝酸钙水泥凝固和硬化的阻滞剂或促进剂。该效果主要归因于铝硅酸盐的不同结构。观察到两种矿物添加物都降低了自热,因此可以在水合作用早期就阻止水石榴石的形成。然而,最初形成的水合产物主要取决于温度而不是铝硅酸盐的使用量。 (C)2019 Elsevier Ltd.保留所有权利。

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