Stacking faults and the {\gamma}-surface on {1-101} pyramidal planes in {\alpha}-titanium
Abstract
Using first principles methods we calculated the entire {\gamma}-surface of the first order pyramidal planes in {\alpha}-titanium. Slip on these planes involving dislocations with c + a dislocations is one means by which {\alpha}-titanium polycrystals may supplement slip on prism planes with a-type Burgers vectors to maintain ductility. We find two stable intrinsic stacking faults with relatively small energies. We show that dissociation of c + a dislocations into two dislocations with Burgers vectors (c + a)/2 is not possible in {\alpha}-titanium because there is no stable stacking fault at (c + a)/2. Instead we propose a possible dissociation of a c + a dislocation into three partial dislocations separated by the two intrinsic faults we have identified.
Keywords
Cite
@article{arxiv.1608.00923,
title = {Stacking faults and the {\gamma}-surface on {1-101} pyramidal planes in {\alpha}-titanium},
author = {Adam J. Ready and Adrian P. Sutton and Peter D. Haynes and David Rugg},
journal= {arXiv preprint arXiv:1608.00923},
year = {2016}
}
Comments
This paper has been withdrawn due to a computational error in generating the first-order pyramidal gamma surface. 9 pages, 10 figures