Hydrogen-induced strengthening in V-Ti alloys
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference17 articles.
1. Role of refractory metal alloys in fusion reactor applications;Mavey;J. Less-Common Met.,1984
2. Mechanical properties of vanadium and vanadium-base alloys;Harrod;Int. Metall. Rev.,1980
3. Hydrogen embrittlement of vanadium-titanium alloys;Tanaka;Trans. Jpn. Inst. Met.,1980
4. Solubility and diffusivity of hydrogen in vanadium and its alloys around room temperature;Tanaka;Trans. Jpn. Inst. Met.,1979
5. Effects of hydrogen on some mechanical properties of vanadium-titanium alloys;Owen;Metall. Trans., A,1985
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1. In-situ characterization of hydrogen-induced defects in palladium by positron annihilation and acoustic emission;International Journal of Hydrogen Energy;2017-08
2. Development of techniques for welding V–Cr–Ti alloys;Journal of Nuclear Materials;1998-10
3. Hydrogen embrittlement of MFR candidate vanadium alloys;Journal of Nuclear Materials;1991-03
4. Evaluation of low-activation vanadium alloys for use as structural material in fusion reactors;Journal of Nuclear Materials;1991-03
5. A microscopic model for the void growth behavior;Acta Metallurgica;1989-07
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