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首页> 外文期刊>Journal of Molecular Liquids >Self-organized honeycomb-like nanoporous oxide layer for corrosion protection of type 304 stainless steel in an artificial seawater medium
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Self-organized honeycomb-like nanoporous oxide layer for corrosion protection of type 304 stainless steel in an artificial seawater medium

机译:自组织蜂窝状的纳米多孔氧化物层,用于在人造海水中型304型不锈钢腐蚀保护

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摘要

A new passivation technology for growing a self-organized nanoporous oxide layer with a honeycomb morphology on Type 304 stainless steel is proposed. FESEM, cross-sectional EDX and XRD are employed to evaluate the morphology, composition and crystal structure of the developed anodic film. Cross-sectional EDX analysis reveals that the nanoporous oxide layer contains a significant amount of fluoride species, which becomes negligible after successive annealing in air at 773 K for 2 h. XRD indicates that the amorphous nanoporous oxide layer is converted to a crystalline magnetite phase (Fe3O4) after annealing. Electrochemical analysis such as potentiodynamic polarization and electrochemical impedance spectroscopy reveals stainless steel with a thermally treated nanoporous oxide layer has improved corrosion resistance in an artificial seawater medium. FESEM analyses are employed to evaluate the stability and microscopic changes in the morphologies of the nanoporous oxide layer after prolonged immersion in the artificial seawater medium. The key factors and corrosion inhibition mechanism by the nanoporous oxide layer are also discussed. (C) 2019 Elsevier B.V. All rights reserved.
机译:提出了一种新的钝化技术,用于在304型不锈钢上具有蜂窝形态的自组织纳米氧化物层。使用FeSEM,横截面EDX和XRD来评估所开发的阳极膜的形态,组合物和晶体结构。横截面EDX分析显示,纳米多孔氧化物层含有大量的氟化物物质,其在773k的空气中连续退火后可以忽略不计2小时。 XRD表明,在退火后,无定形纳米氧化物氧化物层转化为结晶磁铁矿相(Fe3O4)。电化学偏振和电化学阻抗光谱等电化学分析揭示了具有热处理的纳米多孔氧化物层的不锈钢,在人造海水中具有改善的耐腐蚀性。使用FeSEM分析来评估延长浸入人工海水介质后纳米多孔氧化物层的形态的稳定性和微观变化。还讨论了纳米多孔氧化物层的关键因子和腐蚀抑制机理。 (c)2019 Elsevier B.v.保留所有权利。

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