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Hydration kinetics of high-performance cementitious systems under different curing conditions

机译:不同固化条件下高性能胶凝体系的水化动力学

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摘要

Curing plays an essential role in the modern concrete technology, since it has a crucial effect on the development of concrete properties. High-performance cementitious systems are especially sensitive to the applied curing methods because of self-desiccation and high sensitivity to early-age cracking. Thus, it is of particular interest to compare the efficiency of internal curing and traditional curing techniques such as sealing and water ponding. In this study, the efficiency of different types of curing was estimated by means of isothermal calorimetry. Four different water to cement (w/c) ratios in the range of 0.21–0.45 and four types of curing were studied, including sealing, water ponding with different amount of water, internal curing by saturated lightweight aggregate and super-absorbent polymer. The hydration degree was determined using heat of hydration data. Compressive strength of the tested specimens was measured and analyzed. The results indicate that efficiency of different types of curing strongly depends on w/c ratio.
机译:固化在现代混凝土技术中起着至关重要的作用,因为它对混凝土性能的发展具有至关重要的作用。高性能胶凝体系由于自干性和对早期开裂的高度敏感性,因此对所应用的固化方法特别敏感。因此,比较内部固化的效率和传统的固化技术(例如密封和积水)的效率尤其有意义。在这项研究中,通过等温量热法估算了不同类型的固化效率。研究了四种不同的水灰比(w / c)在0.21-0.45的范围内,并研究了四种固化类型,包括密封,注水量不同的水,饱和轻质骨料的内部固化和超吸收性聚合物。使用水合热数据确定水合度。测量并分析测试样品的抗压强度。结果表明,不同类型的固化效率很大程度上取决于w / c比。

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