Interstitial-mediated dislocation climb and the weakening of particle-reinforced alloys under irradiation
Dislocations can climb out of their glide plane by absorbing (or emitting) point defects [vacancies and self-interstitial atoms (SIAs)]. In contrast with conservative glide motion, climb relies on the point defects' thermal diffusion and hence operates on much longer timescales, leading to some...
主要な著者: | Thompson, D, Tarleton, E, Roberts, S, Fitzgerald, S |
---|---|
フォーマット: | Journal article |
出版事項: |
American Physical Society
2018
|
類似資料
-
DISLOCATION CLIMB MECHANISMS IN ELECTRON-IRRADIATED FE-NI-CR ALLOYS
著者:: King, S, 等
出版事項: (1990) -
DISLOCATION CLIMB MECHANISMS IN ELECTRON-IRRADIATED FE-NI-CR ALLOYS
著者:: King, S, 等
出版事項: (1990) -
An improved method to model dislocation self-climb
著者:: Liu, F, 等
出版事項: (2020) -
Dislocation climb driven by lattice diffusion and core diffusion
著者:: Liu, F, 等
出版事項: (2023) -
A new method to model dislocation self-climb dominated by core diffusion
著者:: Liu, F, 等
出版事項: (2019)