Effect of He implantation on fracture behavior and microstructural evolution in F82H
Author:
Funder
Japan Atomic Energy Agency
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference16 articles.
1. Status of reduced activation ferritic/martensitic steel development
2. Effect of irradiation in HFIR on tensile properties of Cr-Mo steels
3. Enhancement of irradiation hardening by nickel addition in the reduced-activation 9Cr–2W martensitic steel
4. Effect of Mn addition on one-dimensional migration of dislocation loops in body-centered cubic Fe
5. Effects of helium on ductile-brittle transition behavior of reduced-activation ferritic steels after high-concentration helium implantation at high temperature
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1. Modeling the helium transport and premature intergranular fracture by dislocation motion in irradiated metals;International Journal of Plasticity;2023-09
2. Irradiation damage concurrent challenges with RAFM and ODS steels for fusion reactor first-wall/blanket: a review;Journal of Physics: Energy;2022-07-01
3. Revealing the hardening mechanisms of ion-irradiated nanostructured multilayers/substrate systems: A theoretical model;International Journal of Plasticity;2021-03
4. Fatigue properties of ferritic/martensitic steel after neutron irradiation and helium implantation;Nuclear Materials and Energy;2020-08
5. The effect of Cr on He segregation and diffusion at Σ3(1 1 2) grain boundary in α-Fe;Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;2019-10
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