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Hydration Reactions and Mechanical Strength Developments of Iron-Rich Sulfobelite Eco-cements

机译:铁富含氟纤维生态水泥的水化反应和机械强度发展

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摘要

Belite calcium sulfoaluminate (BCSA) cements are low-CO2 building materials. However, their hydration behavior and its effect on mechanical properties have still to be clarified. Here, we report a full multitechnique study of thehydration behavior up to 120 days of nonactivated and activated BCSA laboratory-prepared clinkers, with β- or αH-belite as main phase, respectively. The effects of the amount of gypsum added were also studied. The hydration and crystallization processes are reported and discussed in detail. Finally, shrinkage/expansion data are also given. The optimum amount of gypsum was close to10 wt %. Our study has demonstrated that β-belite reacts at a higher pace than α′H-belite, irrespective of the gypsum content.The hydration mechanism of belite determines the development of the mechanical strengths. These are much higher for activated BCSA cement, ∼65 MPa at 120 days, against ∼20 MPa for nonactivated BCSA cement, with the latter having larger amounts of stratlingite.
机译:贝利特硫铝酸钙(BCSA)水泥是低二氧化碳的建筑材料。但是,它们的水合行为及其对机械性能的影响仍有待阐明。在这里,我们报告了完整的多技术研究,研究了未活化和活化的BCSA实验室制备的熟料长达120天的水化行为,分别以β-或αH-贝利石为主要相。还研究了石膏添加量的影响。水化和结晶过程已被报道和详细讨论。最后,还给出了收缩/膨胀数据。石膏的最佳量接近10重量%。我们的研究表明,与石膏含量无关,β-贝氏体的反应速率比α'H-贝氏体更高。贝利特的水合机理决定了机械强度的发展。对于活化的BCSA水泥,这些含量要高得多,在120天时为〜65 MPa,而对于未活化的BCSA水泥,则为〜20 MPa,后者中含有更多的孔雀石。

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