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The role of hydride, martensite and atomic hydrogen in hydrogen-induced delayed fracture of TiNi alloy

โœ Scribed by J.Y. He; K.W. Gao; Y.J. Su; L.J. Qiao; W.Y. Chu


Publisher
Elsevier Science
Year
2004
Tongue
English
Weight
105 KB
Volume
364
Category
Article
ISSN
0921-5093

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The fraction of hydrogen-induced H martensite and mechanical properties of hydrogen-charged austenitic steels were studied as a function of their chemical composition. It is shown that alloying elements affect the intensity of โฅ โ†’ H transformation due to their influence on stacking fault energy. A d