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  4. Electron backscatter diffraction study of variant selection during ordering phase transformation in L1(0)-type red gold alloy
 
research article

Electron backscatter diffraction study of variant selection during ordering phase transformation in L1(0)-type red gold alloy

Larcher, Margaux N. D.  
•
Cayron, Cyril  
•
Blatter, Andreas
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October 1, 2019
Journal Of Applied Crystallography

A shape-memory effect is known to appear in red gold alloys with compositions close to Au-Cu. The aim of this paper is to study by electron backscatter diffraction (EBSD) the variant selection in the A1 -> L1(0) transformation occurring under stress, in bending conditions. The L1(0) domains are successfully identified by this technique despite the c/a ratio being close to unity. The orientation relationship between the cubic and tetragonal phases is determined by a careful analysis of the EBSD data. The distortion of the lattice for each variant is then modelled and calculated from the experimental orientations. The mechanical work associated with the transformation is computed from the lattice distortion by neglecting the obliquity. Finally, the distribution of this mechanical work is compared with the case of a uniform distribution of all variants, in order to evaluate the extent of variant selection. The maximal work criterion, often used for martensitic transformations, enabled quantification of the variant selection phenomenon.

  • Details
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Type
research article
DOI
10.1107/S1600576719011890
Web of Science ID

WOS:000492768900001

Author(s)
Larcher, Margaux N. D.  
Cayron, Cyril  
Blatter, Andreas
Soulignac, Raphaelle
Loge, Roland E.  
Date Issued

2019-10-01

Publisher

INT UNION CRYSTALLOGRAPHY

Published in
Journal Of Applied Crystallography
Volume

52

Start page

1202

End page

1213

Subjects

Chemistry, Multidisciplinary

•

Crystallography

•

Chemistry

•

Crystallography

•

red gold alloy

•

variant selection

•

electron backscatter diffraction

•

ebsd

•

maximal work criterion

•

disorder transformation

•

computer-program

•

x-ray

•

kinetics

•

martensite

•

fields

•

aucu

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LMTM  
Available on Infoscience
January 8, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/164398
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