首页> 外文会议>International Symposium on Environmental Degradation of Materials and Corrosion Control in Metals; 20030824-20030827; Vancouver; CA >Pitting susceptibility of a pipeline steel with banded microstructure of martensite, ferrite and pearlite
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Pitting susceptibility of a pipeline steel with banded microstructure of martensite, ferrite and pearlite

机译:马氏体,铁素体和珠光体带状组织的管线钢的点蚀敏感性

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Early failure of an induction-hardening carbon steel pipe, which was used to transport tailing slurry, was caused by pitting corrosion. The microstructure on the internal pipe surface layer was found being a mixture of martensite, pearlite and ferrite. In this work, the pitting corrosion behavior of each constitute in the microstructure of steel is investigated with electrochemical noise analyses; the electronic properties of passive films were studied with Mott-Schottky relationship. It is found that the passive films formed on the materials under investigation are highly disordered n-type semiconductors. The high-to-low pitting susceptibility is ferrite > martensite > pearlite. The pitting resistance is related to the semiconductive nature of the passive film formed on each constitute. The pitting susceptibility increases with the donor concentration in the passive films.
机译:用于点蚀尾矿浆的感应淬火碳钢管的早期失效是由点蚀引起的。发现内管表层的显微组织是马氏体,珠光体和铁素体的混合物。在这项工作中,通过电化学噪声分析研究了钢的微观结构中每种成分的点蚀行为。通过Mott-Schottky关系研究了无源薄膜的电子性能。发现在所研究的材料上形成的无源膜是高度无序的n型半导体。高至低点蚀敏感性是铁素体>马氏体>珠光体。耐点蚀性与在每个结构上形成的无源膜的半导体性质有关。点蚀敏感性随钝化膜中施主浓度的增加而增加。

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