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Subsurface microstructure effects on surface resolved slip activity
Jonathan M. Hestroffer
,
Jean Charles Stinville
,
Marie Agathe Charpagne
, Matthew P. Miller
, Tresa M. Pollock
, Irene J. Beyerlein
Materials Science and Engineering
Mechanical Science and Engineering
Materials Research Lab
Aerospace Engineering
Beckman Institute for Advanced Science and Technology
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Keyphrases
Surface Microstructure
100%
Slip Behavior
100%
Microstructure Effect
100%
Micromechanics
50%
Microstructural Characteristics
50%
Free Surface
50%
Microstructure
25%
Highly Sensitive
25%
Three-dimensional (3D)
25%
Grain Boundary
25%
High-resolution
25%
Spatially Resolved
25%
Applied Strain
25%
Electron Backscatter Diffraction
25%
Ni-based Superalloy
25%
Statistical Analysis
25%
Slip System
25%
Multiple Slips
25%
Active Slip Systems
25%
Columnar Grain
25%
Subsurface Structure
25%
Lattice Rotation
25%
Grain number
25%
Surface Grain
25%
Triple Junction
25%
Affected Area
25%
3D Analysis
25%
Crystal Plasticity Finite Element Method (CPFEM)
25%
Quadruple Point
25%
TriBeam
25%
Incipient Slip
25%
Physics
Field of View
100%
Polycrystalline
100%
High Resolution
100%
Crystal Plasticity
100%
Heat Resistant Alloys
100%
3D Analysis
100%
Finite Element Analysis
100%
Grain Boundary
100%
Earth and Planetary Sciences
Near-Surface Geology
100%
Field of View
100%
Heat Resistant Alloys
100%
Triple Junction
100%
Engineering
Subsurface
100%
Free Surface
33%
Slip System
33%
High Resolution
16%
Polycrystalline
16%
Finite Element Simulation
16%
Applied Strain
16%
Crystal Field
16%
Columnar Grain
16%
Surface Grain
16%
3D Analysis
16%
Material Science
Surface (Surface Science)
100%
Finite Element Method
14%
Electron Backscatter Diffraction
14%
Nickel-Based Superalloys
14%
Crystal Plasticity
14%
Grain Boundary
14%