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A study of mechanical shear bands in liquids at high pressure
Scott Bair
*
,
Clare McCabe
*
Corresponding author for this work
School of Engineering & Physical Sciences
Institute of Mechanical, Process & Energy Engineering
Colorado School of Mines
Georgia Institute of Technology
Research output
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Contribution to journal
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Article
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peer-review
44
Citations (Scopus)
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Earth and Planetary Sciences
High Pressure
75%
Shear Band
50%
Model
50%
Support
50%
Plane
50%
Navier-Stokes Equation
25%
Strain Rate
25%
Traction
25%
Ellipticity
25%
Investigation
25%
Observation
25%
Temperature
25%
Liquid
25%
Shape
25%
Response
25%
Stability
25%
Loss
25%
Symbol
25%
Ratio
25%
Rate
25%
Appearance
25%
Description
25%
Squeeze Films
25%
Engineering
High Pressure
75%
Models
50%
Supports
50%
Monotonic
25%
Failure Criterion
25%
Shear Band Formation
25%
Mohr-Coulomb Failure
25%
Shear Rate
25%
Thermal Explosion
25%
High Value
25%
Temperature
25%
Losses
25%
Ellipticity
25%
Liquid Lubricant
25%
Lubricant Film
25%
Characteristic Direction
25%
Shear Localization
25%
Orientation Band
25%
Governing Differential Equation
25%
Physics
Shears
100%
High Pressure
75%
Model
50%
Plane
50%
Navier-Stokes Equation
25%
Traction
25%
Squeeze Films
25%
Ellipticity
25%
Liquids
25%
Stability
25%
Shapes
25%
Temperature
25%
Responses
25%
Ratios
25%