Přístupnostní navigace
E-application
Search Search Close
Publication detail
ZELENÝ, M. STRAKA, L. SOZINOV, A.
Original Title
Ab initio study of Ni2MnGa under shear deformation
Type
conference paper
Language
English
Original Abstract
The effect of shear deformation on Ni2MnGa magnetic shape memory alloy has been investigated using ab initio electronic structure calculations. We used the projector-augmented wave method for the calculations of total energies and stresses as functions of applied affine shear deformation. The studied nonmodulated martensite (NM) phase exhibits a tetragonally distorted L21 structure with c/a > 1. A large strain corresponding to simple shears in <100>{001}, <001>{100} and <010>{100} systems was applied to describe a full path between two equivalent NM lattices. We also studied <10-1>{101} shear which is related to twining of NM phase. Twin reorientation in this system is possible, because applied positive shear results in path with significantly smaller energetic barrier than for negative shear and for shears in other studied systems. When the full relaxation of lattice parameters is allowed, the barriers further strongly decrease and the structures along the twinning path can be considered as orthorhombic.
Keywords
Magnetic shape memory alloys; martensitic phase transitions; shear deformation; ab initio calculations;
Authors
ZELENÝ, M.; STRAKA, L.; SOZINOV, A.
RIV year
2015
Released
7. 12. 2015
Publisher
EDP Sciences
ISBN
978-2-7598-1925-6
Book
ESOMAT 2015 – 10th European Symposium on Martensitic Transformations
2261-236X
Periodical
MATEC Web of Conferences
Year of study
33
State
French Republic
Pages from
05006-1
Pages to
05006-6
Pages count
6
URL
http://www.esomat.org/articles/matecconf/abs/2015/14/matecconf_esomat2015_05006/matecconf_esomat2015_05006.html
Full text in the Digital Library
http://hdl.handle.net/11012/201033