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The response of TiAl based alloys to one-dimensional shock loading
JCF Millett
, NK Bourne
, GT Gray
, Ian Jones
Metallurgy and Materials
Research output
:
Contribution to journal
›
Article
27
Citations (Scopus)
Overview
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Keyphrases
TiAl Alloy
100%
Shock Loading
100%
Shear Strength
100%
Equation of State
66%
Grain Size
33%
Microstructural
33%
Particle Velocity
33%
Yield Strength
33%
TiAl
33%
Work Hardening Rate
33%
Shock Velocity
33%
Microstructure Size
33%
Shear Modulus
33%
Positive Dependence
33%
Hydrostat
33%
Intermetallic Phases
33%
Lateral Stress
33%
Stress Measurement
33%
Engineering
One Dimensional
100%
Shear Strength
100%
Shock Loads
100%
Equations of State
66%
Yield Point
33%
Intermetallics
33%
Particle Velocity
33%
Strain Hardening
33%
Shear Modulus
33%
Increasing Stress
33%
Lateral Stress
33%
Material Science
Shear Strength
100%
Shock Loads
100%
Yield Stress
33%
Elastic Moduli
33%
Grain Size
33%
Work Hardening
33%
Stress Measurement
33%
Intermetallic Compound
33%