Mechanical properties of unirradiated and irradiated reduced-activation martensitic steels with and without nickel compared to properties of commercial steels
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference23 articles.
1. High-Chromium Ferritic and martensitic Steels for Nuclear Applications;Klueh,2001
2. Embrittlement of 9Cr-1MoVNb and 12Cr-1MoVW steels irradiated in HFIR
3. Mechanical properties of neutron-irradiated nickel-containing martensitic steels: I. Experimental study
4. Mechanical properties of neutron-irradiated nickel-containing martensitic steels: II. Review and analysis of helium-effects studies
5. Enhancement of irradiation hardening by nickel addition in the reduced-activation 9Cr–2W martensitic steel
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1. Effects of helium on irradiation response of reduced-activation ferritic-martensitic steels: Using nickel isotopes to simulate fusion neutron response;Journal of Nuclear Materials;2021-03
2. Interactions between helium, hydrogen and intrinsic point defects in TaC crystal;Journal of Alloys and Compounds;2018-04
3. Irradiation-resistant ferritic and martensitic steels as core materials for Generation IV nuclear reactors;Structural Materials for Generation IV Nuclear Reactors;2017
4. Conceptual Design of High Temperature Water-Cooled Divertor Plasma-Facing Unit for Fusion Reactor;Proceedings of The 20th Pacific Basin Nuclear Conference;2017
5. High-throughput design of low-activation, high-strength creep-resistant steels for nuclear-reactor applications;Journal of Nuclear Materials;2016-02
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