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Corrosion of carbon steel in filling material in an environment

机译:环境中填充材料中碳钢的腐蚀

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The corrosion process of carbon steel in soil has been investi-gated, in particular the influence of the soil of an urban environ-ment. A field test was carried out with test panels buried in trenches. Localized and uniform corrosion rates were evaluated after 1 and 3 years. Soil samples from points adjacent to the panels were analyzed with respect to a number of physical and chemical parameters believed to influence the corrosion process. Corrosion products were analyzed and identified. The study shows that the localized corrosion rate of soil buried constructions may be remarkably high in a filling material in comparison to other soils. The heterogeneity of the soil seems to have a greater influence on the localized corrosion rate than the chemical composition of the soil. However, the uniform corrosion rate was comparatively low in the heterogeneous filling material. Both the high alkalinity in the soil water and the groundwater, and the high total hardness of the soil water in the filling material seem to reduce the uniform corrosion rate. Corrosion rate determinations with commercial probes is also discussed. The linear polarization resistance (LPR), the electric resistance (ER) and the corrosion potential measurement techniques are compared. All probes showed a seasonal variation in corrosion rate. The measurements with commercial probes were associated with some problems, mostly a result of poor contact between the probes and the soil.
机译:已经研究了碳钢在土壤中的腐蚀过程,尤其是城市环境土壤的影响。用埋在沟槽中的测试板进行了现场测试。 1年和3年后评估局部腐蚀率和均匀腐蚀率。对面板附近各点的土壤样品进行了分析,认为其中一些物理和化学参数会影响腐蚀过程。分析并鉴定了腐蚀产物。研究表明,与其他土壤相比,填充材料中土壤埋藏结构的局部腐蚀速率可能非常高。与土壤的化学组成相比,土壤的异质性似乎对局部腐蚀速率的影响更大。然而,在非均质填充材料中,均匀腐蚀速率相对较低。土壤水和地下水中的高碱度以及填充材料中土壤水的高总硬度似乎都降低了均匀的腐蚀速率。还讨论了使用商业探针确定腐蚀速率的方法。比较了线性极化电阻(LPR),电阻(ER)和腐蚀电位测量技术。所有探针均显示出腐蚀速率的季节性变化。使用商业探针进行测量会带来一些问题,主要是由于探针与土壤之间的接触不良。

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