An electrochemical method for detection and quantification of Laves phase in 12Cr martensitic stainless steel
Author:
Publisher
Elsevier BV
Subject
General Materials Science,General Chemical Engineering,General Chemistry
Reference21 articles.
1. Growth Kinetics of Laves Phase and Its Effect on Creep Rupture Behavior in 9Cr Heat Resistant Steel;Xia;J. Iron Steel Res. Int.,2016
2. Effect of Laves phase on the creep rupture properties of P92 steel;Maddi;Mater. Sci. Eng. A-Struct.,2016
3. A few observations on Laves phase precipitation in relation to its effects on creep rupture strength of ferritic steels based on Fe-9Cr (wt%) alloys at 650°C;Zhu;Mater. Sci. Eng. A-Struct.,2014
4. On the nucleation of Laves phase particles during high-temperature exposure and creep of tempered martensite ferritic steels;Isik;Acta Mater.,2014
5. Laves-phase precipitates in a low-carbon 9% Cr martensitic steel during aging and creep at 923 K;Fedorova;Mater. Sci. Eng. A-Struct.,2014
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1. Quantification of Deleterious Phase Precipitation in a Hyper Duplex Stainless Steel Aged at 700-950 °C Using Optimized Linear Sweep Voltammetry: Effect of KOH Concentration;Journal of Materials Engineering and Performance;2024-09-11
2. Atomic insights into the preferential dissolution of Laves phase of 9% Cr heat resistant steels in the strong alkaline solution;Corrosion Science;2024-02
3. Electrochemical Characterization Method of Laves Phase in 9Cr Martensitic Heat-Resistant Steel and Creep Life Prediction;Crystals;2023-11-20
4. Ab-initio calculations on the interaction between OH− and Fe2Mo Laves phase;Computational Materials Science;2023-09
5. Electrochemical characterization of sigma phase in superduplex stainless steels: LSV-KOH as a promising methodology over DL-EPR;Journal of Materials Research and Technology;2023-09
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