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Crevice Corrosion Resistance and Structure of Passive Film on Fe-Mn-Si-Cr-Ni Steel

机译:Fe-Mn-Si-Cr-Ni钢上的耐缝隙腐蚀和钝化膜的组织

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The crevice corrosion resistance of an Fe-Mn-Si-Cr-Ni (15 Mn) steel as a shape memory alloy was estimated by laser microscopy and statistical calculation of the corrosion depth, and the structure of the passive film formed on the steel was examined by EELS (Electron Energy Loss Spectroscopy) analysis using TEM (transmission electron microscopy). The crevice corrosion results were analyzed using a Gumbel distribution, and the mode (λ) and distribution parameter (a) of the maximum corrosion depth of the 15 Mn steel were found to be much smaller than those of 430 stainless steel (SUS: 16Cr - Fe). This shows that 15 Mn steel has a higher crevice corrosion resistance than 430 SUS steel. In AES and XPS analysis, the passive film of 15 Mn steel was shown to contain Fe, Mn, Cr, Si and Ni. From TEM-EELS, the passive film was found to consist of 2 layers. In the passive film, Cr and Si are thought to be effective early, with Ni preventing penetration of crevice corrosion. It was found that 15 Mn steel could maintain a passive film which was composed of effective elements in a crevice corrosion environment.
机译:通过激光显微镜和腐蚀深度的统计计算,估计了作为形状记忆合金的Fe-Mn-Si-Cr-Ni(15 Mn)钢的耐缝隙腐蚀性能,并且在该钢上形成的钝化膜的结构为使用TEM(透射电子显微镜)通过EELS(电子能量损失谱)分析进行检查。使用Gumbel分布分析缝隙腐蚀结果,发现15 Mn钢的最大腐蚀深度的模式(λ)和分布参数(a)比430不锈钢(SUS:16Cr-铁)。这表明15 Mn钢比430 SUS钢具有更高的耐缝隙腐蚀性能。在AES和XPS分析中,显示15 Mn钢的钝化膜包含Fe,Mn,Cr,Si和Ni。根据TEM-EELS,发现无源膜由两层组成。在钝化膜中,Cr和Si被认为是早期有效的,而Ni可以防止缝隙腐蚀的渗透。发现15 Mn钢在缝隙腐蚀环境中可以保持由有效元素组成的钝化膜。

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