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Early age and hardened performance of cement pastes combining mineral additions

机译:结合矿物添加剂的水泥浆的早期老化和硬化性能

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摘要

To asses the influence of mineral additions (MA) at early age and on hardened performance of fluid cement based pastes, an experimental program was carried out. The design of the mixtures correspond to paste compositions used in self compacting concretes of moderated strength, as those employed for architectural applications. Two types of fillers (limestone and quartzite) have been used to substitute 50 % of cement in a reference paste, with and without a high range water reducing admixture. Then, three active MA (microsilica, nanosilica and metakaolin) were combined. A physical and mechanical characterization in the hardened state showed that the inclusion of MA to a cement-filler mixture can moderately improve the hardened performance of the pastes. Air and water cured samples were tested in order to evaluate the influence of curing conditions. At early ages (24 h), in situ temperature and ultrasonic pulse velocity were monitored on samples with limestone filler, combined with the three active MA, to study the reaction process and microstructure development, respectively. The reaction degree of the samples under study during the first 24 h was related to the microstructure development. Evaporation, drying shrinkage and cracking at early age were also monitored, considering an air flow of 3 m/s on the exposed sample surface. Some relations were described linking cracking risks at early ages with the chemical and physical phenomena involved at early age microstructure evolution.
机译:为了评估矿物添加物(MA)在早期的影响以及对液态水泥基糊料硬化性能的影响,进行了一项实验程序。混合物的设计对应于强度适中的自压实混凝土中所用的糊料组合物,如用于建筑应用的那些。两种类型的填料(石灰石和石英岩)已被用来代替参考糊中50%的水泥,无论是否使用高范围的减水剂。然后,将三种活性MA(微二氧化硅,纳米二氧化硅和偏高岭土)合并。在硬化状态下的物理和机械特性表明,在水泥-填料混合物中包含MA可以适度地改善浆料的硬化性能。测试了空气和水固化样品,以评估固化条件的影响。在早期(24小时),用石灰石填料结合三种活性MA监测样品的原位温度和超声脉冲速度,分别研究反应过程和微观结构发展。在最初的24小时内,所研究样品的反应程度与微观结构的发展有关。考虑到暴露样品表面的气流为3 m / s,还监测了早期的蒸发,干燥收缩和开裂。描述了一些关系,这些关系将早期的裂纹风险与早期的微观结构演变所涉及的化学和物理现象联系在一起。

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