半电池 AISI 1018 和 GS 在存在硫酸镁的砂中埋设混凝土中的电位行为

Brenda Paola Baltazar-García, Daniel Francisco Baltazar-Zamora, G. Santiago-Hurtado, Victor M. Moreno-Landeros, David Lozano, Laura Landa-Ruiz, Shivani Shukla, M. Baltazar-Zamora
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引用次数: 0

摘要

该项目在钢筋混凝土腐蚀领域评估了半电池 AISI 1018 CS(碳钢)和 GS 钢(镀锌钢)的潜力;15 厘米长的钢筋被用作埋在 SP 型砂(含 0% 和 3% 的硫酸镁)中的混凝土试样的钢筋。本研究的实验安排代表了在海洋区域附近种植的混凝土结构地基构件的情况,这些区域的土壤中存在大量的去钝化离子,如硫酸盐。研究试样由两种混凝土混合物制成,水灰比为 0.45,但水泥类型不同(波特兰水泥和抗硫酸盐水泥)。为了根据 ASTM C 876-15 标准监测半电池电位,试样被埋在干净的 SP 土壤和被硫酸镁污染的相同土壤中。在未受硫酸镁污染的 SP 沙中暴露 270 多天后,半电池电位或腐蚀电位的变化情况表明,使用抗硫酸盐水泥并用 GS 钢(镀锌钢)加固的试样对浓度为 3% 的硫酸镁的腐蚀具有最高的抗性。
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Behavior of Potential of Half-Cell AISI 1018 and GS in Concrete Buried in Sand in the Presence of MgSO4
This project, in the area of reinforced concrete corrosion, evaluated the potential of half-cell AISI 1018 CS (Carbon Steel) and GS Steel (Steel with galvanized coating); 15 cm long bars were used as reinforcement in specimens of concrete buried in a Type SP Sand (contaminated with 0% and 3% MgSO4). The experimental arrangement of this research represents the case of the elements of the foundations of concrete structures that are planted near marine areas where this type of soil exists with the presence of high contents of depassivating ions such as sulfates. The study specimens were made with two concrete mixtures with a water/cement ratio 0.45 but with different types of cement (Portland Cement and Sulfate Resistant Cement). For monitoring the half-cell potential according to ASTM C 876-15, the specimens were buried in the clean SP soil and in the same soil but contaminated with MgSO4. After more than 270 days of exposure to uncontaminated SP sand contaminated with MgSO4, the behavior of the half-cell potentials or corrosion potentials show that the specimen made with the sulfate-resistant cement and reinforced with GS Steel (Steel with galvanized coating) presents the highest resistance to corrosion by MgSO4 at a concentration of 3%.
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