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Multilayer corrosion-resistant material based on iron–carbon alloys

机译:基于铁碳合金的多层耐腐蚀材料

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摘要

In this study, the architecture of a multilayer metallic material of iron-carbon alloys with an internal protector was developed based on theoretical studies. The operability of the proposed architecture was experimentally verified using gravimetry and electrochemical analysis. The internal position of the protector enabled the modification of the mechanism of corrosion. The stages of corrosion of the multilayer material were revealed; the material was observed as useable until the third layer was perforated. To demonstrate the obtained results, the authors conducted a set of experiments using X-ray microscopy and scanning electron microscopy with an electron probe analysis of the chemical composition. The cost of the developed material is within the same range as widely used corrosion-resistant stainless austenite steels; and in terms of corrosion resistance, this material is comparable to palladium, molybdenum, nickel, and Hastelloy.
机译:在这项研究中,基于理论研究,开发了具有内部保护层的铁碳合金多层金属材料的体系结构。提出的体系结构的可操作性已通过重量分析和电化学分析进行了实验验证。保护器的内部位置可以改变腐蚀机理。揭示了多层材料的腐蚀阶段。观察到该材料是有用的,直到第三层被穿孔为止。为了证明获得的结果,作者使用X射线显微镜和扫描电子显微镜对化学成分进行了一系列实验。开发材料的成本与广泛使用的耐腐蚀奥氏体不锈钢在同一范围内。在耐腐蚀性方面,该材料可与钯,钼,镍和哈氏合金媲美。

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