Effect of thermo-mechanical treatment on toughness of 9Cr-W ferritic-martensitic steels during aging
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference7 articles.
1. Swelling in several commercial alloys irradiated to very high neutron fluence
2. Change in microstructure and toughness of ferritic-martensitic stainless steels during long-term aging
3. The behavior of low C9Cr2Mo steel in a fast breeder reactor irradiation environment
4. Microstructure and toughness of Cr-W and Cr-V ferritic steels
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1. Influence of Induction Preheating and Post Weld Heat Treatment for Reducing Delta Ferrite Content and Improving Mechanical Properties of Induction Assisted Gas Metal Arc Welding of Modified 9Cr-1MoV Steel;Journal of Materials Engineering and Performance;2024-01-29
2. Advanced Microstructural Characterization of Long-Term Thermal Aging Effects in Ferritic-Martensitic Steel Ht9;2024
3. Advanced Microstructural Characterization of Long-Term Thermal Aging Effects in Ferritic-Martensitic Steel Ht9;2024
4. The Effect of Long‐Term Ageing on Microstructural Properties and Laves Phase Precipitation of Welded P91 and P92 Steels;steel research international;2021-09-02
5. Laves phases: a review of their functional and structural applications and an improved fundamental understanding of stability and properties;Journal of Materials Science;2020-12-22
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