Development of 9Cr-ODS ferritic–martensitic steel prepared by chemical reduction and mechanical milling
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference13 articles.
1. Influence of the temperature on the tensile behaviour of a modified 9Cr–1Mo T91 martensitic steel
2. Structural materials for Gen-IV nuclear reactors: Challenges and opportunities
3. Nano-mesoscopic structural characterization of 9Cr-ODS martensitic steel for improving creep strength
4. Ultrafine-grained nanocluster-strengthened alloys with unusually high creep strength
5. Assessment of neutron irradiation effects on RAFM steels
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1. Shrinkage and coalescence behavior of helium bubbles in Fe9Cr1.5W0.4Si F/M steel under the coupling effect of compression stress and temperature;Journal of Nuclear Materials;2024-02
2. Micro-alloying effects of Ta and B on nano-oxides and grain boundaries in 13CrWTi-ODS ferritic alloys;Journal of Alloys and Compounds;2024-01
3. Microstructure and mechanical properties of multi-component nano oxide-dispersion strengthened RAFM steel fabricated via laser powder bed fusion;Materials Letters;2024-01
4. Microstructures and Mechanical Properties of Alumina and/or Yttrium Oxides Strengthened 9Cr Steel Fabricated by Vacuum Casting;steel research international;2023-02-05
5. Inclusion and mechanical properties of ODS-RAFM steels with Y, Ti, and Zr fabricated by melting;Nuclear Engineering and Technology;2022-07
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