Oxide networks, graph theory, and the passivity of Ni–Cr–Mo ternary alloys
Author:
Publisher
Elsevier BV
Subject
General Materials Science,General Chemical Engineering,General Chemistry
Reference21 articles.
1. Graph Theory and the Passivity of Iron-Chromium Binary Alloys
2. Graph theory and the passivity of binary alloys
3. Oxide networks, graph theory, and the passivity of binary alloys
4. Oxide Networks, Graph Theory, and the Passivity of Cr-Mo, Cr-Zr, and Mo-Ti Binary Alloys
5. General Relations Regarding Graph Theory and the Passivity of Binary Alloys
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1. Formation and long-time exposure aging of oxides on Ni-Cr and Ni-Cr-X (X = Mo, W) alloys in acidic chloride solutions: Ramifications towards corrosion resistance;Applied Surface Science;2024-07
2. Effect of Sintering Temperatures on the Microstructure and Densification of Ni-Cr-Mo Alloys;2024
3. The role of chromium content in aqueous passivation of a non-equiatomic Ni38Fe20CrxMn21-0.5xCo21-0.5x multi-principal element alloy (x = 22, 14, 10, 6 at%) in acidic chloride solution;Acta Materialia;2023-02
4. Passivation of Ni-Cr and Ni-Cr-Mo Alloys in Low and High pH Sulfate Solutions;Journal of The Electrochemical Society;2023-02-01
5. Corrosion Behavior and Hardness of Binary Mg Alloys Produced via High-Energy Ball-Milling and Subsequent Spark Plasma Sintering;Corrosion;2020-11-17
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