On the corrosion and passivity of Inconel alloy 625 in HNO3 solution

IF 9.5
Khashayar Morshed-Behbahani, Ali Nasiri
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引用次数: 0

Abstract

Exploring the passivity and electrochemical behavior of Inconel alloy 625 in nitric acid solution could open up possibilities for potential applications, either in bulk form or as claddings. Hence, this research investigates corrosion behavior and passivity of Inconel alloy 625 in nitric acid solutions of varying concentrations (0.01–1.00 mol/L) using a range of analytical techniques, including potentiodynamic polarization testing, chronoamperometry measurement, Mott-Schottky (MS) analysis, X-ray diffraction (XRD) approaches, and point defect modeling (PDM). Results demonstrate that corrosion current density does not necessarily decrease with increasing electrolyte concentration (Please check it out). Additionally, the alloy exhibits higher passive film transpassive potentials in more concentrated solutions. Potentiostatic polarization tests reveal an increase in steady-state current densities attributed to the passive films formed in more concentrated solutions. Lower electrolyte concentrations lead to the formation of more intact bilayered passive films. In this context, the formation of passive films is elucidated by examining the generation and annihilation of point defects. The semiconducting behavior of passive layers is further examined through XRD patterns and electrochemical properties. According to PDM, the diffusivity of point defects within the passive films and their respective donor densities can be closely correlated.
铬镍铁合金625在HNO3溶液中的腐蚀及钝化性能
研究铬镍铁合金625在硝酸溶液中的钝化性能和电化学行为,可以为其整体或包覆层的潜在应用开辟可能性。因此,本研究利用一系列分析技术,包括动电位极化测试、时温测量、Mott-Schottky (MS)分析、x射线衍射(XRD)方法和点缺陷建模(PDM),研究了Inconel合金625在不同浓度(0.01-1.00 mol/L)硝酸溶液中的腐蚀行为和钝化性。结果表明,腐蚀电流密度并不一定随着电解质浓度的增加而降低(请查看)。此外,合金在更浓的溶液中表现出更高的钝化膜传递电位。恒电位极化试验显示稳态电流密度的增加归因于在更浓的溶液中形成的钝化膜。较低的电解质浓度导致形成更完整的双层钝化膜。在这种情况下,通过检查点缺陷的产生和湮灭来阐明被动薄膜的形成。通过XRD谱图和电化学性能进一步考察了钝化层的半导体行为。根据PDM,钝化膜内点缺陷的扩散系数与其各自的施主密度可以密切相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.30
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