Macquarie Home | Course Handbook | Library | Campus Map | Macquarie Contacts
Home page

Macquarie University ResearchOnline

Home
Add
-List Of Titles -Measurements and full-field predictions of deformation heterogeneities in ice

Please use this identifier to cite or link to this item: http://hdl.handle.net/1959.14/146858

OpenURL Link
11 Visitors 12 Hits 0 Downloads
Title
Measurements and full-field predictions of deformation heterogeneities in ice
Related
Earth and planetary science letters, Vol. 305, No. 1-2, (2011), p.153-160
DOI
10.1016/j.epsl.2011.02.050
Publisher
Elsevier
Date
2011
Author/Creator
Montagnat, Maurine
Author/Creator
Blackford, Jane R
Author/Creator
Piazolo, Sandra
Author/Creator
Arnaud, Laurent
Author/Creator
Lebensohn, Ricardo A
Description
We have made creep experiments on columnar grained ice and characterised the microstructure and intragranular misorientations over a range of length scales. A FFT full-field model was used to predict the deformation behaviour, using the experimentally characterised microstructure as the starting material. This is the first time this combination of techniques has been used to study the deformation of ice. The microstructure was characterised at the cm scale using an optical technique, the automatic ice texture analyser AITA and at the micron scale using electron backscattered diffraction EBSD. The crystallographic texture and intragranular misorientations were fully characterised by EBSD (3 angles). The deformed microstructure frequently showed straight subgrain boundaries often originating at triple points. These were identified as kink bands, and for the first time we have measured the precise misorientation of the kink bands and deduced the nature of the dislocations responsible for them. These dislocations have a basal edge nature and align in contiguous prismatic planes enabling deformation along the c-axis. In addition, non-uniform grain boundaries and regions of recrystallization were seen. We present coupling between fine scale characterization of intragranular misorientations, from experiments, and prediction of internal stresses that cause it. The model predicts the morphology of the observed local misorientations within the grains, however it over predicts the misorientation values. This is because the annealing and recrystallization mechanisms are not taken into account in the model. Ice is excellent as a model material for measuring, predicting and understanding deformation behaviour for polycrystalline materials. Specifically for ice this knowledge is needed to improve models of ice sheet dynamics that are important for climatic signal interpretation.
Description
8 page(s)
Subject Keyword
Deformation heterogeneities
Subject Keyword
Full-field approach
Subject Keyword
Ice
Subject Keyword
Kink band
Resource Type
journal article
Organisation
Macquarie University. Dept. of Earth and Planetary Sciences

Identifier
http://hdl.handle.net/1959.14/146858
Identifier
ISSN:0012-821X
Identifier
mq_res-ext-2-s2.0-79953757234
Language
eng
Reviewed
Reviewed
Save/E-mail Citation
Citation Format
E-mail Address
Subject
"Earth and planetary science letters"
 
OR
  • Show All  
  • Show My Selections 
Advanced Search

Search

Browse

  • By Title 
  • By Author/Creator 
  • By Department/Centre 
  • By Subject Keyword 
  • By Journal/Conference 
  • By FoR/RFCD codes 
  • By Resource Type 
  • By Date 

Highlights

  • Most Accessed Objects 
  • Recent Additions 
  • Pending Publications 
  • Author Profiles 

Resources

  • About ResearchOnline 
  • FAQ 
  • Open Access 
  • Open Access-FAQs 
  • Copyright 
  • Contribute 
  • Help 
  • Contact
  • Terms and Conditions 
Valid XHTML 1.0 Strict Powered by VITAL

Copyright Macquarie University | Privacy Statement | Accessibility Information

ABN 90 952 801 237 | CRICOS Provider No 00002J

Library Staff Sign In