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Multi-scale modeling of nanocrystalline materials
Namas Chandra
, Sirish Namilae
Research output
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Contribution to journal
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Conference article
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peer-review
1
Scopus citations
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Dive into the research topics of 'Multi-scale modeling of nanocrystalline materials'. Together they form a unique fingerprint.
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Keyphrases
Asymptotic Expansion Homogenization
100%
Atomic Scale
100%
Atomic Simulation
50%
Atomistic Simulation
50%
Composite Medium
50%
Continuum Scale
50%
Dynamic Setting
50%
Grain Boundary
50%
Grain Boundary Energy
50%
Grain Boundary Sliding
50%
Homogenization of Periodic Structures
50%
Large-scale Systems
50%
Local Modulus of Elasticity
50%
Molecular Dynamics
50%
Multiscale Methodology
50%
Multiscale Modeling
100%
Nanocrystalline Materials
100%
Porous Media
50%
Scale Effect
50%
Simulation Study
50%
Strain Measure
50%
Stress-strain
100%
Symmetric Tilt Grain Boundary
50%
Engineering
Applicability
33%
Asymptotic Expansion
66%
Atomistic Simulation
33%
Energetics
33%
Energy Engineering
33%
Grain Boundary
100%
Grain Boundary Sliding
33%
Large-Scale Systems
33%
Limitations
33%
Multiscale
33%
Multiscale Modeling
100%
Nanocrystal
100%
Scale Effect
33%
Young's Modulus
33%
Material Science
Aluminum
33%
Complex System
33%
Elastic Moduli
33%
Grain Boundary
100%
Grain Boundary Sliding
33%
Homogenization
100%
Multi-Scale Modeling
100%
Nanocrystalline Material
100%
Periodic Structure
33%