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Nanoindentation and nano-compression testing of Ni
3
Al precipitates
B. Gan
, H. Murakami
, R. Maaß
, L. Meza
, J. R. Greer
, T. Ohmura
, S. Tin
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
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3
Al precipitates'. Together they form a unique fingerprint.
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Keyphrases
Bulk Crystal
33%
CMSX-4
100%
Compression Testing
100%
Crystal Form
33%
Cuboidal Precipitate
33%
Dislocation-free
66%
Focused Ion Beam
33%
Free Particle
33%
Ga Implantation
66%
Heat Treatment
66%
Ideal Strength
33%
Increasing Load
33%
Instrumented Nanoindentation
33%
Irregularly Shaped
33%
Nanocompression
100%
Nanocrystals
33%
Nanohardness
33%
Nanoindentation
100%
Nanoindentation Response
33%
Nanomechanical Properties
33%
Ni-based Single Crystal Superalloy
33%
Ni3Al
100%
Particle Approach
33%
Soft Matrix
33%
Softening Effect
33%
Submicron Size
33%
Yield Strength
66%
Yield Stress
33%
Material Science
Coarsening
33%
Compression Testing
100%
Focused Ion Beam
33%
Gallium Ion
66%
Heat Treatment
66%
Ion Implantation
66%
Mechanical Property
33%
Nanocrystals
33%
Nanohardness
33%
Nanoindentation
100%
Single Crystal
33%
Superalloys
33%
Yield Stress
100%
Engineering
Bulk Crystal
33%
Compression Testing
100%
Focused Ion Beam
33%
Heat Treatment
66%
Increasing Load
33%
Ion Implantation
66%
Mechanical Property
33%
Nanocrystal
33%
Nanohardness
33%
Single Crystal Superalloys
33%
Yield Point
100%