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RUSTING EVOLUTION AND ANTI-CORROSION MECHANISM OF MnCuP WEATHERING STEEL IN SIMULATED ATMOSPHERES

机译:模拟环境中Mncup风化钢的生锈演化与防腐机制

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This papers ummaries the corrosion resistance of a 1ow-cost MnCuP weathering steel in simulated coastal, in dustrial, and coastal-industrial a tmospheric environments submitted to wet/dry cyclic a cceleration corrosion tests. Ther esults indicate that MnCuP eathering steel exhibits ideal corrosion resistance, and a protective rust layer can be formed on the steel with increasing the corrosion cycles in the three environments. The corrosion rate during the initial corrosion process is much higher than it is during the subsequent process. The corrosion rate decreases and-then maintains at a steady decreasing value with prolonging the exposure duration. For mechanism, Mn and Cu contribute to the ion-selectivity of the rust layer formed in the coastal atmosphere. Cu and P are responsible for the enhanced atmospheric corrosion resistance in the industrial atmosphere. The combined effects of Mn, Cu, and P elements may be the key reason for the improved corrosion resistance of the steel in coastal-industrial atmosphere.
机译:这篇论文umaries在模拟沿海地区,在石天性和沿海工业中,在模拟沿海,沿海工业的耐腐蚀钢的耐腐蚀性,提交给湿润/干循环纸质腐蚀试验。考虑表明,MNCUP沉淀钢具有理想的耐腐蚀性,并且可以在钢上形成保护锈层,随着三种环境的腐蚀循环增加。初始腐蚀过程中的腐蚀速率远高于随后的过程中的腐蚀速率。腐蚀速率降低,然后在延长曝光持续时间的情况下以稳定的降低维持。对于机构,Mn和Cu有助于在沿海大气中形成的锈层的离子选择性。 CU和P负责工业气氛中的增强的大气耐腐蚀性。 Mn,Cu和P元件的组合效果可以是沿海工业大气中钢材改善耐腐蚀性的关键原因。

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