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Sinterforging and indentation creep of nanophase TiAl
Lisa Kim
, Thomas Klassen
,
Robert Averback
, Carl Altstetter
Materials Science and Engineering
Materials Research Lab
Research output
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Article
›
peer-review
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Keyphrases
TiAl
100%
Nanophase
100%
Indentation Creep
100%
Condensation
33%
Grain Size
33%
Ball Milling
33%
Argon
33%
TiAl Powder
33%
Magnetron Sputtering
33%
High Temperature
16%
Single Crystal
16%
High Density
16%
Densification
16%
Line Broadening
16%
Grain Growth
16%
Bulk Material
16%
Mechanical Behavior
16%
Microstructural Changes
16%
Equiaxed
16%
Plastic Deformation
16%
Mechanical Testing
16%
Vapor Phase
16%
Preparation Method
16%
Deformation Parameters
16%
X-ray Measurements
16%
Processing Behavior
16%
Microscopic Observation
16%
Grain Width
16%
Elemental Powder
16%
Density Measurement
16%
Green Compact
16%
Green Density
16%
Nanometer Range
16%
Aluminum Powder
16%
Hot Hardness
16%
Powder Consolidation
16%
Uniaxial Compression
16%
Titanium Powder
16%
Sinter-forging
16%
High Temperature Deformation
16%
Engineering
Indentation
100%
Creep
100%
Ball Milling
100%
Magnetron
100%
Polycrystalline
50%
Bulk Material
50%
Densification
50%
Broadening
50%
Plastic Deformation
50%
Aluminum Powder
50%
Hot Hardness
50%
Green Density
50%
Grain Diameter
50%
Mechanical Testing
50%
Green Compact
50%
Nanometer Range
50%
Material Science
Density
100%
Indentation
100%
Creep
100%
Grain Size
50%
Aluminum
25%
Titanium
25%
Mechanical Testing
25%
Plastic Deformation
25%
Magnetron Sputtering
25%
Single Crystal
25%