Gardner, Joe
ORCID: 0000-0002-8593-0201 and Wheeler, John
ORCID: 0000-0002-7576-4465
(2021)
The influence of large second phase grains on microstructural evolution during diffusion creep
Journal of Structural Geology, 148.
p. 104371.
ISSN 0191-8141, 1873-1201
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GardnerWheeler2021TwoPhaseDiffusionCreep.pdf - Author Accepted Manuscript Download (2MB) | Preview |
Abstract
Diffusion creep is a fundamental mechanism by which Earth materials deform, but the way microstructure evolves during diffusion creep remains poorly understood, because the mechanism does not leave behind abundant microstructural indicators. Because most rocks are polyphase, this study used numerical simulations to investigate the influence of large second-phase grains on the microstructural evolution of a fine-grained matrix during diffusion creep in both pure and simple shear. The results of the modelling show that large second-phase grains create stress heterogeneities that focus the effects of diffusion creep, which can lead to a profound drop in strength of a material, and dictate where grain boundary sliding surfaces develop within the fine-grained matrix. Rotations of matrix grains are strongly influenced by the rotation direction and velocity of the large grain, especially those that lie adjacent to it. The rotation direction of large grains is not simply either synthetic or antithetic to the shear direction. Instead, rotation directions of large grains can change due to interactions with the matrix. Such interactions could result in simple strain paths producing complex microstructures which could be misinterpreted to record much more complicated strain histories.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | Diffusion creep, Pressure solution, Crystallographic preferred orientation, Microstructural evolution, Numerical modelling |
| Divisions: | Faculty of Science & Engineering > School of Environmental Sciences |
| Depositing User: | Symplectic Admin |
| Date Deposited: | 17 May 2021 07:31 |
| Last Modified: | 01 Mar 2026 10:46 |
| DOI: | 10.1016/j.jsg.2021.104371 |
| Related Websites: | |
| URI: | https://livrepository.liverpool.ac.uk/id/eprint/3122696 |
| Disclaimer: | The University of Liverpool is not responsible for content contained on other websites from links within repository metadata. Please contact us if you notice anything that appears incorrect or inappropriate. |
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