Earth and Planetary Sciences
Strain Rate
100%
Superplasticity
100%
Temperature
33%
Exponent
16%
Deformation
16%
Growth
16%
Sensitivity
16%
Liquid Phase
8%
Nucleation
8%
Characterization
8%
Elongation
8%
Cavity
8%
Tensile Test
8%
Plastic
8%
Rate
8%
Partial Melting
8%
Engineering
High Strain Rate Superplasticity
100%
Cavitation
33%
Temperature
25%
Composite
25%
Deformation
16%
Aluminum Alloys
16%
Rate Sensitivity Exponent
16%
Strain Rate Sensitivity
16%
Experimental Result
8%
Cavity
8%
Experimental Finding
8%
Liquid Phase
8%
Tensile Test
8%
Initial Strain Rate
8%
Rates of Strain
8%
Melting Temperature
8%
Threshold Stress
8%
Material Science
Superplasticity
100%
Strain Rate
100%
Temperature
33%
Composite Material
25%
Nucleation
16%
Characterization
8%
Plastics
8%
Liquid
8%
Physics
Superplasticity
100%
Temperature
33%
Composite
25%
Deformation
16%
Exponents
16%
Cavitation Flow
16%
Growth
16%
Liquid Phases
8%
Elongation
8%
Partial Melting
8%
Alloy
8%