Data Publication

Full-Field numerical simulations of sub grain rotation and grain boundary migration in halite during viscoplastic deformation

Hao, Baoqin | Llorens, Maria-Gema | Griera, Albert | Bons, Paul Dirk | Lebensohn, Ricardo A. | Yu, Yuanchao | Gómez-Rivas, Enrique

DIGITAL.CSIC

(2023)

Descriptions

The way in which salt flows is highly heterogeneous and results in complex fabrics and structures. To improve our understanding of how halite deforms and recrystallizes under different conditions we performed full-field numerical modelling of polycrystalline aggregates of halite. The numerical approach is based on the coupling of the viscoplastic Full-Field Transform code (VPFFT, Lebensohn and Rollet, 2020) that simulates the viscoplastic deformation and multi-scale platform ELLE (Bons et al, 2008) that has enabled recrystallization processes such as recovery, nucleation and grain boundary migration. This data set This data set contains (i) the output files with the crystal orientation data of simulation DRX_100, DRX_200 and DRX_300, and (ii) a code to plot the crystallographic orientation density function (ODF) using the open-source code MTEX (Mainprice et al., 2011).

DRX100/extract_xy_euler3-10.txt, extract_xy_euler3-20.txt extract_xy_euler3-30.txt extract_xy_euler3-33.txt extract_xy_euler3-40.txt extract_xy_euler3-50.txt extract_xy_euler3-60.txt extract_xy_euler3-67.txt extract_xy_euler3-70.txt extract_xy_euler3-80.txt extract_xy_euler3-90.txt extract_xy_euler3-100.txt extract_xy_euler3-110.txt extract_xy_euler3-120.txt extract_xy_euler3-1330.txt ELLE200/extract_xy_euler3-10.txt, extract_xy_euler3-20.txt extract_xy_euler3-30.txt extract_xy_euler3-33.txt extract_xy_euler3-40.txt extract_xy_euler3-50.txt extract_xy_euler3-60.txt extract_xy_euler3-67.txt extract_xy_euler3-70.txt extract_xy_euler3-80.txt extract_xy_euler3-90.txt extract_xy_euler3-100.txt extract_xy_euler3-110.txt extract_xy_euler3-120.txt extract_xy_euler3-1330.txt ELLE300/extract_xy_euler3-10.txt, extract_xy_euler3-20.txt extract_xy_euler3-30.txt extract_xy_euler3-33.txt extract_xy_euler3-40.txt extract_xy_euler3-50.txt extract_xy_euler3-60.txt extract_xy_euler3-67.txt extract_xy_euler3-70.txt extract_xy_euler3-80.txt extract_xy_euler3-90.txt extract_xy_euler3-100.txt extract_xy_euler3-110.txt extract_xy_euler3-120.txt extract_xy_euler3-1330.txt ODF_EBSD_GB_halite.m

Keywords


Originally assigned keywords
Crystal orientation
Sub grain rotation
Halite
Viscoplastic deformation
Numerical simulations

Corresponding MSL vocabulary keywords
halite

MSL enriched keywords
minerals
halide minerals
halite
Inferred parameter
inferred mechanisms
inferred recrystallization mechanisms
grain boundary migration
measured property
aluminium
Analyzed feature
grain size and configuration
crystallographic preferred orientation (CPO)

Metadata


MSL enriched sub domains

microscopy and tomography
geochemistry

Source


Source publisher

DIGITAL.CSIC

DOI

10.20350/digitalcsic/15474

Creators

Hao, Baoqin
Personal
Llorens, Maria-Gema
Personal
Griera, Albert
Personal
Bons, Paul Dirk
Personal
Lebensohn, Ricardo A.
Personal
Yu, Yuanchao
Personal
Gómez-Rivas, Enrique
Personal

Contributors

Digital.CSIC
Digital.CSIC

Citation

Hao, B., Llorens, M.-G., Griera, A., Bons, P. D., Lebensohn, R. A., Yu, Y., & Gómez-Rivas, E. (2023). Full-Field numerical simulations of sub grain rotation and grain boundary migration in halite during viscoplastic deformation [Data set]. DIGITAL.CSIC. https://doi.org/10.20350/DIGITALCSIC/15474


Dates

Accepted 2023-07-31
Available 2023-07-31
Issued 2023-07-25

Language

en


Funding References

Funder Name EGR acknowledges the support of the Ramón y Cajal fellowship (RYC2018-026335-I), funded by the MCIN/AEI/10.13039/501100011033 and the FSE. MGL acknowledges the support of the Q2818002D project, funded by MCIN/AEI/10.13039/501100011033 by European Union NextGenerationEU/PRTR.

Rights

Name openAccess
Name Creative Commons Attribution 4.0 International
URI https://creativecommons.org/licenses/by/4.0/legalcode
Identifier cc-by-4.0
Identifier Scheme SPDX
Scheme URI https://spdx.org/licenses/

Locations

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