Internal and effective stress analysis during cyclic softening of F82H mod. Martensitic stainless steel
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Publisher
Elsevier
Reference15 articles.
1. Irradiation response on mechanical properties of neutron irradiated F82H
2. Phase stability of reduced activation ferritic steel: 8%Cr-2%W-0.2%V-0.04%Ta-Fe
3. THERMAL FATIGUE OF A 12% CHROMIUM MARTENSITIC STAINLESS STEEL
4. Low cycle fatigue properties of 8Cr–2WVTa ferritic steel at elevated temperatures
5. Fatigue performance and cyclic softening of F82H, a ferritic-martensitic steel
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1. On the microstructural evolution in a 10% Cr martensitic steel during interrupted low cycle fatigue testing at 650 °C;International Journal of Fatigue;2023-10
2. Effective and back stress evolution upon cycling oxide-dispersion strengthened steels;International Journal of Fatigue;2023-04
3. Crystallographic evolution and cyclic softening behavior of reduced activation ferritic-martensitic steel under different fatigue modes;Materials Science and Engineering: A;2021-01
4. Mechanical Behaviour and Microstructure Evolution of Eurofer97 during Low-Cycle Fatigue at Room Temperature and 550°C;Key Engineering Materials;2011-01
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