Microstructure and mechanical properties of F82H weld metal irradiated in SINQ target-3
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference14 articles.
1. The application of martensitic stainless steels in long lifetime fusion first wall/blankets
2. R. Klueh, D.R. Harries, High-chromium ferritic and martensitic steels for nuclear application, ASTM stock number: MONO3; ISBN 0-8031-2090-7
3. Microstructural modification due to reheating in multipass manual metal arc welds of 9Cr–1Mo steel
4. Effects of thermal aging on the mechanical behavior of F82H weldments
5. Microstructure of welded and thermal-aged low activation steel F82H IEA heat
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1. Correlation between microstructure and hardening of 9Cr ferritic/martensitic steels irradiated in spallation neutron source;Journal of Nuclear Materials;2024-08
2. Correlation between Microstructure and Hardening of 9cr Ferritic/Martensitic Steels Irradiated in Spallation Neutron Source;2024
3. Evolution of the F82H/Cr interface after solid-state diffusion bonding below Ac1 temperature: examination of microstructures and hardness;Journal of Nuclear Materials;2023-11
4. Study on microstructure and mechanical property of linear friction welding on 9Cr reduced activation ferrite/martensite steel;Journal of Nuclear Materials;2020-04
5. Technical Issues in Fusion Welding of Reduced Activation Ferritic/Martensitic Steels for Nuclear Fusion Reactors;Journal of Welding and Joining;2020-02-29
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