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Molecular-dynamics simulations of Ni-based superalloys
C. Woodward
, M. Asta
,
D. R. Trinkle
, J. Lill
Materials Science and Engineering
Nuclear, Plasma and Radiological Engineering
Materials Research Laboratory
National Center for Supercomputing Applications (NCSA)
Beckman Institute for Advanced Science and Technology
Research output
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Keyphrases
Ab Initio Molecular Dynamics Simulation
20%
Al-W Alloy
40%
CMSX-4
40%
Configurational Entropy
20%
Degrees of Freedom
20%
Density Functional Theory
20%
Density Inversion
60%
Diffusion Rate
20%
Increased Temperature
20%
Instantiation
20%
Liquid Metal
100%
Liquid Phase
20%
Liquidus Temperature
20%
Metal Density
80%
Metal Diffusion
20%
Molar Volume
20%
Molecular Dynamics Simulation
100%
Mushy Zone
20%
Ni Alloy
20%
Ni-based
20%
Ni-based Alloy
20%
Ni-based Superalloy
100%
NiAl
40%
Numerical Error
20%
Simulation-based
20%
Solid Volume Fraction
40%
Solidus Temperature
20%
Superalloy
40%
Target Composition
20%
Engineering
Degree of Freedom
20%
Illustrates
20%
Increasing Temperature
20%
Instantiation
20%
Liquid Metal
100%
Liquid Phase
20%
Liquidus Temperature
20%
Molar Volume
20%
Mushy Zone
20%
Ni Alloy
20%
Proof-of-Concept
20%
Solidus Temperature
20%
Target Composition
20%
Target Temperature
20%
Material Science
Density
100%
Density (Specific Gravity)
11%
Liquid Metal
55%
Nickel Alloy
11%
Nickel-Based Superalloys
100%
Superalloys
22%
Volume Fraction
22%