Effect of helium implantation on mechanical properties and microstructure evolution of reduced-activation 9Cr–2W martensitic steel
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference27 articles.
1. The influence of helium on the bulk properties of fusion reactor structural materials
2. High temperature helium embrittlement in austenitic stainless steels - correlations between microstructure and mechanical properties
3. Current status and future R&D for reduced-activation ferritic/martensitic steels
4. Void swelling of Japanese candidate martensitic steels under FFTF/MOTA irradiation
5. Dependence of impact properties on irradiation temperature in reduced-activation martensitic steels
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1. Fatigue properties of ferritic/martensitic steel after neutron irradiation and helium implantation;Nuclear Materials and Energy;2020-08
2. Cavity evolution and hardness changes in a 15Cr-ODS ferritic steel by post He-implantation annealing;Nuclear Materials and Energy;2018-05
3. Radiation response of ODS ferritic steels with different oxide particles under ion-irradiation at 550 °C;Journal of Nuclear Materials;2018-04
4. Effect of microstructural evolution by isothermal aging on the mechanical properties of 9Cr-1WVTa reduced activation ferritic/martensitic steels;Journal of Nuclear Materials;2017-03
5. 9Cr-2W계 저방사형 페라이트-마르텐사이트 강에서 미세조직과 템퍼링 열처리가 기계적 특성에 미치는 영향;Korean Journal of Metals and Materials;2015-05-05
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