Development of Thermodynamic Criteria for Determining the Composition of Duplex Stainless Steels with High Corrosion Resistance

Author:

Fedorov Aleksandr1ORCID,Karasev Vladimir1,Kovalev Pavel2,Shaposhnikov Nikita1,Zhitenev Andrey1ORCID

Affiliation:

1. Scientific and Technical Complex «New Technologies and Materials», Peter the Great St. Petersburg Polytechnic University, 195251 St. Petersburg, Russia

2. Institute of Machinery, Materials, and Transport, Peter the Great St. Petersburg Polytechnic University, 195251 St. Petersburg, Russia

Abstract

One of the most popular methods for ranking duplex stainless steels (DSSs) and predicting their corrosion properties is the calculation of the pitting resistance equivalent number (PREN). However, since DSSs are two-phase materials with a significant fraction of secondary phases and precipitates, the application of the PREN can be highly limited. This article attempted to use a new approach to describe the corrosion resistance of these steels. The corrosion resistance of two DSSs of the same class was investigated. Under identical solution heat treatments in the temperature range of 1050–1200 °C, the crevice corrosion resistance of one steel increased, while that of the other decreased. It was demonstrated that the amounts of austenite and ferrite changed similarly in these steels, and the different corrosion resistances were associated with the behaviors of secondary phases: niobium carbonitride and chromium nitride. SEM-EDS analysis was conducted to analyze the redistribution of elements between phases in both cases, showing good agreement with the thermodynamic modeling results. The PREN was calculated for each phase depending on the treatment temperature, and a method for calculating the effective PREN (PRENeff), accounting for phase balance and secondary phases, was proposed. It was shown that this indicator described corrosion properties better than the classical PREN calculated for the average steel composition. This study demonstrated how the calculation of critical temperatures (the temperature of equal amounts of ferrite and austenite, the temperature of the beginning of chromium nitride formation, and the temperature of the beginning of σ-phase formation) could describe the corrosion resistance of DSSs. Maximum possible deviations from these temperatures were defined, allowing the attainment of the required corrosion properties for the steels. Based on the conducted research, an approach for selecting new compositions of DSSs was proposed.

Funder

Ministry of Science and Higher Education of the Russian Federation

Publisher

MDPI AG

Reference25 articles.

1. Über das Korrosionsverhalten austenitischer Chrom-Nickel-(Molybdän-) Stähle mit und ohne Stickstoffzusatz unter besonderer Berücksichtigung ihrer Beanspruchbarkeit in chloridhaltigen Lösungen;Lorenz;Thyssenforschung,1969

2. Application of the pitting resistance equivalent concept to some highly alloyed austenitic stainless steels;Corrosion,1998

3. Charles, J. (2015, January 17–19). Duplex Families and Applications: A Review, Part 3. Proceedings of the Stainless Steel World Conference and Exhibition, Maastricht, The Netherlands.

4. Hibner, E., Tassen, S., and Skogsberg, J. (1998, January 22–27). Effect of Alloy Nickel Content vs PREN on the Selection of Austenitic Oil Country Tubular Goods for Sour Gas Service. Proceedings of the Corrosion 98: Research in Progress Symposium Extended Abstracts, San Diego, CA, USA. NACE Paper 106.

5. Effect of tungsten on the pitting and crevice corrosion resistance of type 25Cr super duplex stainless steels;Haugan;Corrosion,2017

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