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Low-temperature rheology of calcite
Michael K. Sly
, Arashdeep S. Thind
, Rohan Mishra
, Katharine M. Flores
, Philip Skemer
Department of Mechanical Engineering & Materials Science
McKelvey School of Engineering
Department of Earth & Planetary Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
20
Scopus citations
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Keyphrases
Low Temperature
100%
Yield Stress
100%
Rheology
100%
Micropillar
100%
Low Temperature Rheology
100%
Micropillar Compression
100%
Nanoindentation
66%
Flow Law
66%
Compression Experiment
66%
Indentation
33%
Temperature Effect
33%
Uniaxial
33%
Applied Load
33%
Plastic Deformation
33%
Stress State
33%
Orientation Dependence
33%
Micromachining Technique
33%
Indenter
33%
Crystal Orientation
33%
Earth's Crust
33%
Polycrystalline Sample
33%
Micromechanical Testing
33%
High Confining Pressure
33%
Low-temperature Plasticity
33%
Indentation Hardness
33%
Nanoindentation Test
33%
Focused Ion Beam
33%
Plastic Yielding
33%
High-temperature Experiments
33%
Nanoindenter
33%
Carrara Marble
33%
Engineering
Low-Temperature
100%
Rheology
100%
Yield Point
60%
Micropillar Compression
60%
Indentation
20%
Applied Load
20%
Focused Ion Beam
20%
Micro Machining
20%
Numerical Approach
20%
Stress State
20%
Polycrystalline
20%
Crystallographic Orientation
20%
Orientation Dependence
20%
Plastic Deformation
20%
Confining Pressure
20%
Indentation Hardness
20%
Material Science
Rheology
100%
Nanoindentation
75%
Yield Stress
75%
Indentation
50%
Micromachining
25%
Focused Ion Beam
25%
Plastic Deformation
25%