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Influence of Different Secondary Raw Materials on the Granulated Blast-Furnace Slag Reaction

机译:不同二次原料对高炉矿渣造粒反应的影响

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摘要

For the practical use of granulated blast-furnace slag as a clinker substitute, the addition of an activator is neccessary, in order to ensure that a sufficient early and ultimate strength will be reached. Up to now, portland cement has been the most common type of activator for granulated blast-furnace slag. The addition of portland cement leads to the activation of the granulated blast-furnace slag either on an alkaline or, to a minor extent, on a sulphate basis. Materials which prevent the obstruction of the latent hydraulic reaction by a close gel layer of reaction products work as an activator. In this paper, the influence of different fine-grained additives, e. g. fly ash or cement kiln dust, on the granulated blast-furnace slag reaction and the strength development is discussed. The investigations showed that it is basically possible to manufacture composite cement with a high content of granulated blast-furnace slag by using industrially by-products. These cements shows particularly a higher early strength than the reference cement dependent on the composition respectively to the addition. The reactivity of the blast-furnace slag is strongly influenced by the chemical composition of the addition or activator but also by the mineralogical and chemical composition of the blast-furnace slag.
机译:为了实际使用粒状高炉矿渣作为熟料替代品,必须添加活化剂,以确保达到足够的早期强度和极限强度。迄今为止,硅酸盐水泥已成为粒状高炉矿渣的最常见活化剂。硅酸盐水泥的添加导致粒化的高炉矿渣在碱性或少量硫酸盐的基础上活化。防止反应产物的紧密凝胶层阻碍潜在的水力反应的材料用作活化剂。在本文中,不同细粒添加剂的影响,例如。 G。粉煤灰或水泥窑粉尘,对高炉矿渣的颗粒化反应及强度发展进行了探讨。研究表明,基本上可以通过使用工业副产品来生产高含量的高炉矿渣颗粒复合水泥。这些水泥显示出比参考水泥特别高的早期强度,这取决于分别添加的组成。高炉渣的反应性受添加物或活化剂的化学组成的强烈影响,也受高炉渣的矿物学和化学组成的强烈影响。

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