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Role of diffusing interstitials on dislocation glide in refractory body centered cubic metals.

Authors :
Fey, Lauren T W
Hunter, Abigail
Beyerlein, Irene J
Source :
Modelling & Simulation in Materials Science & Engineering; Jun2024, Vol. 32 Issue 4, p1-26, 26p
Publication Year :
2024

Abstract

In this work, we employ a phase field dislocation dynamics technique to simulate dislocation motion in body centered cubic refractory metals with diffusing interstitials. Two distinct systems are treated, Nb with O interstitials and W with H interstitials, to consider both relatively small and large atomic size interstitials. Simulations without and with driving stress are designed to investigate the role of interstitial type and mobility on the glide of edge- and screw-character dislocations. The simulations reveal the various short- and long-range dislocation-interstitial interactions that can take place and their dependency on interstitial type, site occupation, stress state, and mobility of the interstitials relative to dislocations. We show that while interstitial O increases the breakaway stress for both screw and edge dislocations in Nb, interstitial H in low H concentrations makes screw dislocations easier and the edge dislocations harder to move. The simulations find that screw dislocation glide is enhanced by the presence of interstitials in both systems. Edge dislocation glide is enhanced in W–H and inhibited in Nb–O. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09650393
Volume :
32
Issue :
4
Database :
Complementary Index
Journal :
Modelling & Simulation in Materials Science & Engineering
Publication Type :
Academic Journal
Accession number :
176118142
Full Text :
https://doi.org/10.1088/1361-651X/ad2fd6