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Plastic deformation and recrystallization of garnet: a mechanism to facilitate diffusion creep
Craig Storey
, D. Prior
Research output
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peer-review
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Dive into the research topics of 'Plastic deformation and recrystallization of garnet: a mechanism to facilitate diffusion creep'. Together they form a unique fingerprint.
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Earth and Planetary Sciences
Garnet
100%
Strain
63%
Misalignment
27%
Electron
18%
Recrystallization
18%
Diffusion
18%
Area
18%
Whirl
18%
Creep
18%
Deformation
9%
Microstructure
9%
Backscatter
9%
Electron Probe Analysis
9%
Scotland
9%
Amphibolite Facies
9%
Grain Boundary
9%
Microscopy
9%
Substructure
9%
Shear Zone
9%
Retrogression
9%
Plastic Deformation
9%
Sliding
9%
Eclogite
9%
Diffraction
9%
Foliation
9%
Dislocation Creep
9%
Single Crystal
9%
Record
9%
Condition
9%
Increasing
9%
Loss
9%
Mineral
9%
INIS
garnets
100%
strains
63%
orientation
27%
creep
27%
crystallography
18%
diffusion
18%
electrons
18%
rotation
18%
recrystallization
18%
zones
9%
shear
9%
deformation
9%
microstructure
9%
dynamics
9%
losses
9%
recovery
9%
control
9%
plasticity
9%
increasing
9%
matrices
9%
scotland
9%
minerals
9%
diffraction
9%
randomness
9%
dislocations
9%
amphibolites
9%
electron microprobe analysis
9%
grain boundaries
9%
single crystals
9%
optical microscopy
9%