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Phillip Eisenlohr
Phillip Eisenlohr
Michigan State University
Materials science
Plasticity
Spectral method
crystal plasticity
Structural engineering
5
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194
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DAMASK – The Düsseldorf Advanced Material Simulation Kit for modeling multi-physics crystal plasticity, thermal, and damage phenomena from the single crystal up to the component scale
2019
Computational Materials Science
Franz Roters
Martin Diehl
Pratheek Shanthraj
Phillip Eisenlohr
C. Reuber
Su Leen Wong
Tias Maiti
A. Ebrahimi
Thomas Hochrainer
Helge-Otto Fabritius
Svetoslav Nikolov
Martin Friák
N Fujita
Nicolò Grilli
Koenraad G.F. Janssens
N. Jia
P.J.J. Kok
Duancheng Ma
Felix Meier
Ewald Werner
Markus Stricker
D. Weygand
Dierk Raabe
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Using the DAMASK suite to study micromechanics and crystal plasticity of heterogeneous materials
2014
Phillip Eisenlohr
Martin Diehl
Pratheek Shanthraj
C. Kords
Franz Roters
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Spectral Methods for finite strain polycrystal plasticity
2014
Phillip Eisenlohr
Pratheek Shanthraj
Martin Diehl
Jan Christoph Reuber
Tias Maiti
Franz Roters
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On a proper account of plastic size effects in continuum models including the flux of dislocation density
2014
C. Kords
Phillip Eisenlohr
Franz Roters
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Spectral methods as a powerful alternative to FEM for high-resolution simulation of crystal plasticity
2013
Phillip Eisenlohr
Martin Diehl
Pratheek Shanthraj
Franz Roters
Ricardo A. Lebensohn
Bob Svendsen
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