Oxidation behaviour and microstructural stability of alloy 625 during long-term exposure in steam

Author:

Garcia-Fresnillo L.,Chyrkin A.,Böhme C.,Barnikel J.,Schmitz F.,Quadakkers W. J.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference56 articles.

1. Maurer GE, Patel AD (2010) Alloy design and processing challenges for advanced power systems: an alloy producer’s perspective. Adv Sci Technol 72:22–30

2. Maziasz PJ, Wright IG, Shingledecker J, Gibbons TB, Romanosky RR (2005) Defining the materials issues and research for ultra-supercritical steam turbines. In: Advances in materials technology for fossil power plants 2004: proceedings from the fourth international conference (ASM International), proceedings from the fourth international conference, pp 602–622

3. Ennis PJ, Quadakkers WJ (2007) Mechanisms of steam oxidation in high strength martensitic steels. Int J Press Vessels Pip 84:75–81

4. Nickel H, Ennis PJ, Quadakkers WJ (1997) Candidate materials for advanced power generating plants and high temperature heat exchangers. Trans Indian Inst Met 50:681–689

5. Ehlers J (2001) Oxidation von ferritischen 9–12 % Cr-Stählen in wasserdampfhaltigen Atmosphären bei 550 bis 650 °C, PhD thesis, RWTH Aachen

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