An AP/FIM and TEM study of the microstructural evolution of MANET steel after dual-beam irradiation
Author:
Publisher
Elsevier BV
Subject
Surfaces, Coatings and Films,Condensed Matter Physics,Surfaces and Interfaces,General Physics and Astronomy,General Chemistry
Reference8 articles.
1. The microstructure of the 1.4914 MANET martensitic steel before and after irradiation with 590 MeV protons
2. Tensile behavior and microstructure of the helium and hydrogen implanted 12% Cr-steel MANET
3. Behavior in fatigue-relaxation of a creep resistant 12% Cr steel after helium implantation
4. The tensile and fatigue properties of DIN 1.4914 martensitic stainless steel after 590 MeV proton irradiation
5. A Monte Carlo computer program for the transport of energetic ions in amorphous targets
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1. Carbides in Co–Re–Cr-based high-temperature alloys;Journal of Materials Science;2016-04-26
2. First results on the effect of direct quenching on mechanical properties and anelastic relaxation in CLAM steel;Fusion Engineering and Design;2010-12
3. Distribution of C–Cr associates and mechanical stability of Cr martensitic steels;Journal of Nuclear Materials;1998-10
4. Chromium redistribution in thermally aged and irradiated ferritic–martensitic steels;Materials Science and Engineering: A;1998-07
5. Decomposition of the MANET steel under dual-beam irradiation;Journal of Nuclear Materials;1996-02
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