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Influence of slag composition on the stability of steel in alkali-activated cementitious materials

机译:矿渣组成对碱激发胶凝材料钢稳定性的影响

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摘要

Among the minor elements found in metallurgical slags, sulfur and manganese can potentially influence the corrosion process of steel embedded in alkali-activated slag cements, as both are redox-sensitive. Particularly, it is possible that these could significantly influence the corrosion process of the steel. Two types of alkali-activated slag mortars were prepared in this study: 100% blast furnace slag and a modified slag blend (90% blast furnace slag + 10% silicomanganese slag), both activated with sodium silicate. These mortars were designed with the aim of determining the influence of varying the redox potential on the stability of steel passivation under exposure to alkaline and alkaline chloride-rich solutions. Both types of mortars presented highly negative corrosion potentials and high current density values in the presence of chloride. The steel bars extracted from mortar samples after exposure do not show evident pits or corrosion product layers, indicating that the presence of sulfides reduces the redox potential of the pore solution of slag mortars, but enables the steel to remain in an apparently passive state. The presence of a high amount of MnO in the slag does not significantly affect the corrosion process of steel under the conditions tested. Mass transport through the mortar to the metal is impeded with increasing exposure time; this is associated with refinement of the pore network as the slag continued to react while the samples were immersed.
机译:在冶金炉渣中发现的微量元素中,硫和锰都可能影响埋在碱活化炉渣水泥中的钢的腐蚀过程,因为两者均对氧化还原敏感。特别是,这些可能会显着影响钢的腐蚀过程。在本研究中,制备了两种类型的碱活化矿渣砂浆:100%的高炉矿渣和改性的矿渣混合物(90%的高炉矿渣+ 10%的硅锰渣),均用硅酸钠活化。设计这些砂浆的目的是确定在暴露于碱性和碱性氯化物溶液中时,氧化还原电势的变化对钢钝化稳定性的影响。两种类型的砂浆在存在氯化物的情况下均表现出极高的负腐蚀电位和高电流密度值。暴露后从砂浆样品中提取的钢筋没有显示明显的凹坑或腐蚀产物层,表明硫化物的存在降低了矿渣砂浆孔隙溶液的氧化还原电位,但使钢保持明显的钝态。在测试条件下,炉渣中大量MnO的存在不会显着影响钢的腐蚀过程。暴露时间延长,阻碍了通过砂浆向金属的大量运输;这与孔网的细化有关,因为在浸入样品的过程中矿渣继续反应。

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