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Spectroelectrochemical Study of Stainless Steel Corrosion in NaCl-KCl Melt

机译:NaCl-Kcl熔体不锈钢腐蚀的光谱电化学研究

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High-temperature spectroelectrochemestry was applied to study corrosion of various types of stainless steel in molten salts. The electronic absorption spectra of products of anodic dissolution of stainless steel major components (iron, chromium, nickel, molybdenum, manganese, titanium) were measured in NaCl-KCl melt at 750 °C. The effectiveness and limitations of applying spectroscopic method for studying alloys corrosion was demonstrated on example of anodic dissolution of AISI 316L, 316Ti and 321 austenitic steels. The major corrosion products of steels are iron, manganese and chromium species. Prolongation of anodic dissolution leads to increasing chromium-to-iron ratio in the melt. Titanium in steels forms very stable carbonitride species that aren't dissolved during anodic oxidation.
机译:应用高温光谱电化学酵母,用于研究熔盐各种不锈钢的腐蚀。在750℃下在NaCl-Kcl熔体中测量不锈钢主要成分(铁,铬,镍,钼,锰,锰,锰,锰,锰,锰的电子吸收光谱。对研究合金腐蚀的应用光谱法的有效性和限制在AISI 316L,316TI和32121型奥氏体钢的阳极溶解的情况下证明了腐蚀。钢的主要腐蚀产品是铁,锰和铬物种。阳极溶解的延长导致熔体中的铬 - 铁比增加。钢中的钛形成非常稳定的碳氮化物物种,在阳极氧化过程中不溶解。

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