Aluminum Σ3 grain boundary sliding enhanced by vacancy diffusion
✍ Scribed by Ningning Du; Yue Qi; Paul E. Krajewski; Allan F. Bower
- Book ID
- 103999103
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 1019 KB
- Volume
- 58
- Category
- Article
- ISSN
- 1359-6454
No coin nor oath required. For personal study only.
✦ Synopsis
Grain boundary sliding is an important deformation mechanism for elevated temperature forming processes. Molecular dynamics simulations are used to investigate the effect of vacancies in the grain boundary vicinity on the sliding of Al bi-crystals at 750 K. The threshold stress for grain boundary sliding was computed for a variety of grain boundaries with different structures and energies. These structures included one symmetrical tilt grain boundary and five asymmetrical tilt grain boundaries. Without vacancies, low energy R3 grain boundaries exhibited significantly less sliding than other high energy grain boundaries. The addition of vacancies to R3 grain boundaries decreased the threshold stress for grain boundary sliding by increasing the grain boundary diffusivity. A higher concentration of vacancies enhanced this effect. The influence of vacancies on grain boundary diffusivity and grain boundary sliding was negligible for high energy grain boundaries, due to the already high atom mobility in these boundaries.
📜 SIMILAR VOLUMES
A theoretical model is suggested which describes the combined effects of grain boundary (GB) sliding and diffusion on strain hardening and ductility of nanocrystalline materials (NCMs). Within the model, GB sliding creates disclination dipoles near triple junctions, inducing high elastic stresses an