Tensile properties of a tempered martensitic iron–chromium–carbon model alloy
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference19 articles.
1. Ferritic/martensitic steels – overview of recent results
2. Microstructure and mechanical properties of newly developed low activation martensitic steels
3. Microstructural development in reduced activation ferritic alloys irradiated to 200 dpa at 420°C
4. Fluence and helium effects on the tensile properties of ferritic steels at low temperatures
5. Effect of Neutron Irradiation on Yield Stress and Ductility of Reduced-Activation Martensitic 9Cr–WVTa Steels
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1. High temperature strain hardening behavior in double forged and potassium doped tungsten;Journal of Nuclear Materials;2014-01
2. Tensile Work Hardening Behavior of Thin-Section Plate and Thick-Section Tubeplate Forging of 9Cr-1Mo Steel in the Framework of One-Internal-Variable Kocks–Mecking Approach;Metallurgical and Materials Transactions A;2013-07-10
3. Applicability of the one-internal-variable Kocks–Mecking approach for tensile flow and work hardening behaviour of modified 9Cr–1Mo steel;Materials Science and Engineering: A;2013-07
4. Creep behavior and deformation mechanisms in a nanocluster strengthened ferritic steel;Acta Materialia;2012-02
5. Lattice strain and damage evolution of 9–12%Cr ferritic/martensitic steel during in situ tensile test by X-ray diffraction and small angle scattering;Journal of Nuclear Materials;2010-12
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