Perez-Garcia Francisca, Rubio-Cintas Maria Dolores, Parron-Rubio Maria Eugenia, Garcia-Manrique Jose Manuel
Departamento de Ingeniería Civil, Materiales y Fabricación, Universidad de Málaga, 29071 Málaga, Spain.
Departamento de Ingeniería Industrial y Civil, Universidad de Cádiz, 11202 Algeciras, Spain.
Materials (Basel). 2020 Jan 24;13(3):561. doi: 10.3390/ma13030561.
This article presents a study of the main properties (consistency, workability, leaching, unsoundness, and mechanical properties) of cement grouts prepared with cement replacement by blast furnace slag (GGBS). Mixtures have been analyzed in the absence of additives and reached high replacement percentages. As shown in the different tests presented, the observed evolution of the resistance and workability of the mixtures makes them very interesting for its application. Different types of cement (CEM-I 42.5 and CEM-I 52.5 R) and different water/binder values (1 and 0.67) are used. The results present opportunities for the steel industry by the intensive valorization of slag waste. The reduction of the use of cement in construction is also one of the key aims of this line of research. Results show improvements in the mechanical response with good fresh state properties for substitution percentages up to 70%. It is verified with leaching analysis that these products have less impact on the environment.
本文介绍了一项关于用粒化高炉矿渣(GGBS)替代水泥制备的水泥浆体主要性能(稠度、工作性、溶出性、安定性和力学性能)的研究。在不添加外加剂的情况下对混合料进行了分析,并达到了较高的替代率。如所展示的不同试验所示,混合料所观察到的强度和工作性变化使其在应用方面非常具有吸引力。使用了不同类型的水泥(CEM-I 42.5和CEM-I 52.5 R)以及不同的水胶比(1和0.67)。研究结果通过对矿渣废料的深度利用为钢铁行业带来了机遇。减少建筑中水泥的使用也是这一研究方向的关键目标之一。结果表明,替代率高达70%时,力学性能有所改善,且新拌状态性能良好。浸出分析证实这些产品对环境的影响较小。