Point defect processes during incubation period of void growth in austenitic stainless steels, Ti-modified 316SS
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference10 articles.
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4. W. Brandt, A. Dupasquier, Positron Solid-State Physics, North-Holland, Amsterdam, 1989, pp. 659.
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1. Effects of alloying elements Mn, Mo, Ti, Si, P and C on the incubation period of void swelling in austenitic stainless steels;Tungsten;2021-03
2. Development of Laser-HVEM and Its Application on In-situ Observation on Lattice Defects Behavior;CHINESE J STRUC CHEM;2020
3. Effect of laser and/or electron beam irradiation on void swelling in SUS316L austenitic stainless steel;Journal of Nuclear Materials;2017-05
4. Subcascade formation ratio in neutron-irradiated stainless steels;Journal of Physics: Conference Series;2016-01-26
5. Electron irradiation-induced defects in Mo-diluted FeCrNi austenitic alloy during void swelling incubation;Journal of Physics: Conference Series;2016-01-26
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