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首页> 外文期刊>Journal of the Ceramic Society of Japan >Analysis of hydration of blast furnace slag in high-volume blast furnace slag cement using an expanded hydration equation
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Analysis of hydration of blast furnace slag in high-volume blast furnace slag cement using an expanded hydration equation

机译:利用扩展水化方程分析高炉渣水泥中高炉渣的水化

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This paper presents a theoretical analysis of the hydration and hydrated layers of blast furnace slag grains in high-volume blast furnace slag cement. Hydrated high-volume blast furnace slag cement paste contains a large number of unreacted slag grains, and hydrated layers are observed surrounding the unreacted slag grains. To analyze the hydration reaction of the blast furnace slag components, an extended effective coefficient is adopted instead of the conventionally used Tomosawa’s equation. This makes it possible to explain the rate of heat liberation of blast furnace slag in comparison to that of ordinary Portland cement. The simulation results for the thickness of the hydrated layer around the slag particles in terms of its conversion radius dependence are in good agreement with the measured values.
机译:本文对高炉渣水泥中高炉渣颗粒的水化层和水合层进行了理论分析。水合高容量高炉矿渣水泥浆包含大量未反应的矿渣颗粒,并且在未反应的矿渣颗粒周围观察到水合层。为了分析高炉矿渣成分的水合反应,采用了扩展的有效系数来代替常规使用的Tomosawa方程。与普通硅酸盐水泥相比,这可以解释高炉矿渣的热释放速率。关于炉渣颗粒周围水合层厚度的转换半径依赖性的模拟结果与测量值非常吻合。

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