Effects of varying temperature irradiation on the neutron irradiation hardening of reduced-activation 9Cr–2W martensitic steels
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference17 articles.
1. Low-activation ferritic and martensitic steels for fusion application
2. Development of low-chromium, chromium-tungsten steels for fusion
3. Microstructural analysis of neutron-irradiated martensitic steels
4. The effect of small additional elements on the precipitation of reduced activation Fe9Cr2W steels
5. Tensile properties of neutron irradiated 9Cr-WVTa steels
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1. Machine learning-based predictions of yield strength for neutron-irradiated ferritic/martensitic steels;Fusion Engineering and Design;2023-10
2. Effect of temperature change on the irradiation hardening of the structural alloys for ITER blanket and ITER TBM irradiated to 1.5dpa in JMTR;Journal of Nuclear Materials;2007-08
3. Mechanical properties and microstructures in F82H steel irradiated under alternating temperature;Journal of Nuclear Materials;2007-08
4. On the effects of irradiation and helium on the yield stress changes and hardening and non-hardening embrittlement of ∼8Cr tempered martensitic steels: Compilation and analysis of existing data;Journal of Nuclear Materials;2006-09
5. Neural-network analysis of irradiation hardening in low-activation steels;Journal of Nuclear Materials;2006-02
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