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Comparing Properties of Concrete Containing Electric Arc Furnace Slag and Granulated Blast Furnace Slag

机译:含电弧炉渣和粒状高炉渣的混凝土的性能比较

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摘要

For sustainable development in the construction industry, blast furnace slag has been used as a substitute for cement in concrete. In contrast, steel-making slag, the second largest by-product in the steel industry, is mostly used as a filler material in embankment construction. This is because steel-making slag has relatively low hydraulicity and a problem with volumetric expansion. However, as the quenching process of slag has improved recently and the steel making process is specifically separated, the properties of steel-making slag has also improved. In this context, there is a need to find a method for recycling steel-making slag as a more highly valued material, such as its potential use as an admixture in concrete. Therefore, in order to confirm the possibility of using electric arc furnace (EAF) oxidizing slag as a binder, a comparative assessment of the mechanical properties of concrete containing electric arc furnace oxidizing slag, steel-making slag, and granulated blast furnace (GBF) slag was performed. The initial and final setting, shrinkage, compressive and split-cylinder tensile strength of the slag concretes were measured. It was found that replacing cement with EAF oxidizing slag delayed the hydration reaction at early ages, with no significant problems in setting time, shrinkage or strength development found.
机译:为了建筑业的可持续发展,高炉矿渣已被用作混凝土中水泥的替代品。相比之下,炼钢炉渣是钢铁行业的第二大副产品,通常被用作路堤建筑中的填充材料。这是因为炼钢炉渣的水力较低,并且存在体积膨胀的问题。但是,由于炉渣的淬火工艺最近得到了改善,并且炼钢工艺被特别地分离,因此炼钢炉渣的性能也得到了改善。在这种情况下,需要找到一种方法,用于将炼钢炉渣作为更有价值的材料进行再循环,例如其作为混凝土外加剂的潜在用途。因此,为了确认使用电弧炉(EAF)氧化炉渣作为粘结剂的可能性,对含有电弧炉氧化炉渣,炼钢炉渣和粒状高炉(GBF)的混凝土的机械性能进行了比较评估。进行了熔渣。测量了矿渣混凝土的初始和最终凝固,收缩率,抗压强度和开裂柱抗拉强度。发现用EAF氧化渣代替水泥可延缓早期的水化反应,在凝结时间,收缩或强度发展方面没有显着问题。

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