Corrosion resistance of Cu-P-RE weathering steel
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摘要: 通過干濕周浸加速腐蝕實驗研究了不同稀土含量的耐候鋼和對比普碳鋼的腐蝕行為及其耐蝕性能.采用失重法測得了各試樣的腐蝕率;結果發現,稀土耐候鋼的腐蝕率遠遠低于普碳鋼的,不同稀土含量的耐候鋼的耐腐蝕性不盡相同.采用電化學交流阻抗技術對帶銹鋼樣的表面銹層結構及電化學反應過程進行了研究,提出在本實驗條件下鋼電化學腐蝕的等效電路模型,計算出銹層電阻、極化阻抗等表征銹層性能的電化學元件參數值.稀土耐候鋼銹層中存在半無限擴散和有限厚度擴散兩種過程,有限厚度擴散極化阻抗反映了耐候鋼內銹層的保護性能.Abstract: The corrosion behavior and corrosion resistance of Cu-P-RE weathering steel and plain carbon steel were studied by drywet cycle immersion test. A weight-loss method was used to measure the corrosion rates of all steel samples. The results show the corrosion rate of Cu-P-RE weathering steel is much lower than that of 0.235 steel. The corrosion resistances of the weathering steels with different rare earth contents are distinguishing. The structure of rust layer on the rusty steel samples and its electrochemical reaction process were investigated by electrochemical impedance spectra techniques. An equivalent circuit was set up to represent the steel/solution interface reaction. Some electrochemical parameters such as rust layer resistance and polarization impedance were deduced from electrochemical impedance spectra of the steels. The parameters can estimate the protective properties of rust layer. There are two different diffusion processes, which are semi-infinite diffusion and finite thickness diffusion, in rust layer on the RE weathering steel. The protective properties of inner rust layer on the weathering steel can be estimated by the polarization impedance of finite thickness diffusion.
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