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Zeitschriftenartikel (26)

  1. 21.
    Zeitschriftenartikel
    Diehl, M.; Shanthraj, P.; Eisenlohr, P.; Roters, F.: Neighborhood influences on stress and strain partitioning in dual-phase microstructures. An investigation on synthetic polycrystals with a robust spectral-based numerical method. Meccanica 51 (2), S. 429 - 441 (2016)
  2. 22.
    Zeitschriftenartikel
    Ma, D.; Eisenlohr, P.; Epler, E.; Volkert, C.; Shanthraj, P.; Diehl, M.; Roters, F.; Raabe, D.: Crystal plasticity study of monocrystalline stochastic honeycombs under in-plane compression. Acta Materialia 103, S. 796 - 808 (2016)
  3. 23.
    Zeitschriftenartikel
    Ma, D.; Eisenlohr, P.; Shanthraj, P.; Diehl, M.; Roters, F.; Raabe, D.: Analytical bounds of in-plane Young’s modulus and full-field simulations of two-dimensional monocrystalline stochastic honeycomb structures. Computational Materials Science 109, S. 323 - 329 (2015)
  4. 24.
    Zeitschriftenartikel
    Shanthraj, P.; Eisenlohr, P.; Diehl, M.; Roters, F.: Numerically robust spectral methods for crystal plasticity simulations of heterogeneous materials. International Journal of Plasticity 66, S. 31 - 45 (2015)
  5. 25.
    Zeitschriftenartikel
    Cereceda, D.; Diehl, M.; Roters, F.; Shanthraj, P.; Raabe, D.; Perlado, J. M.; Marian, J.: Linking atomistic, kinetic Monte Carlo and crystal plasticity simulations of single-crystal tungsten strength. GAMM-Mitteilungen 38 (2), S. 213 - 227 (2015)
  6. 26.
    Zeitschriftenartikel
    Tasan, C. C.; Diehl, M.; Yan, D.; Zambaldi, C.; Shanthraj, P.; Roters, F.; Raabe, D.: Integrated experimental–simulation analysis of stress and strain partitioning in multiphase alloys. Acta Materialia 81, S. 386 - 400 (2014)

Buchkapitel (2)

  1. 27.
    Buchkapitel
    Shanthraj, P.; Diehl, M.; Eisenlohr, P.; Roters, F.; Raabe, D.: Spectral Solvers for Crystal Plasticity and Multi-physics Simulations. In: Handbook of Mechanics of Materials, S. 1 - 26 (Hg. Hsueh, C.-H.; Schmauder, S.; Chen, C.-S.; Chawla, K. K.; Chawla, N. et al.). Springer, Singapore (2019)
  2. 28.
    Buchkapitel
    Shanthraj, P.; Zikry, M. A.: Microstructural behavior and fracture in crystalline materials: Overview. In: Handbook of Damage Mechanics: Nano to Macro Scale for Materials and Structures, S. 1 - 29 (Hg. Voyiadjis, G. Z.). Springer-Verlag, New York Inc. (2015)

Vortrag (81)

  1. 29.
    Vortrag
    Eisenlohr, P.; Chakraborty, A.; Shanthraj, P.; Diehl, M.; Pagan, D.; Bieler, T. R.: More than Crystal Plasticity: Multiphysics in DAMASK. TMS 2020 Annual Meeting & Exhibition, San Diego, CA, USA (2020)
  2. 30.
    Vortrag
    Diehl, M.; Cereceda, D.; Marian, J.; Liu, C.; Dong, J.; Wicke, M.; Brückner-Foit, A.; Kamachali, R. D.; Shanthraj, P.; Roters, F. et al.; Eisenlohr, P.; Raabe, D.: Coupling Crystal Plasticity and Phase Field Methods - The Future of Integrated Computational Materials Engineering? Seminar "Materials Technology, in particular of Magnesium Materials", Geesthacht, Germany (2020)
  3. 31.
    Vortrag
    Eisenlohr, P.; Chakraborty, A.; Shanthraj, P.; Diehl, M.; Pagan, D.; Bieler, T. R.: More than Crystal Plasticity: Multiphysics in DAMASK. Materials Science & Technology 2019 (MS&T19), Portland, OR, USA (2019)
  4. 32.
    Vortrag
    Diehl, M.; Cereceda, D.; Marian, J.; Liu, C.; Dong, J.; Wicke, M.; Brückner-Foit, A.; Kamachali, R. D.; Shanthraj, P.; Roters, F. et al.; Eisenlohr, P.; Raabe, D.: DAMASK: The Düsseldorf Advanced Materials Simulation Kit. Seminar of the Department of Materials Science and Engineering of The Ohio State University, Columbus, OH, USA (2019)
  5. 33.
    Vortrag
    Diehl, M.; Cereceda, D.; Marian, J.; Liu, C.; Dong, J.; Wicke, M.; Brückner-Foit, A.; Kamachali, R. D.; Shanthraj, P.; Roters, F. et al.; Eisenlohr, P.; Raabe, D.: Coupling Crystal Plasticity and Phase Field Methods - The Future of Integrated Computational Materials Engineering? Recent Advances in the Modeling and Simulation of the Mechanics of Nanoscale Materials, Philadelphia, PA, USA (2019)
  6. 34.
    Vortrag
    Diehl, M.; Shanthraj, P.; Eisenlohr, P.; Roters, F.; Raabe, D.: Beyond Crystal Plasticity – Developing Tools for Integrated Computational Materials Engineering. Seminar of the Tasan Group at MIT, Boston, MA, USA (2019)
  7. 35.
    Vortrag
    Kontis, P.; Makineni, S. K.; Wu, X.; Mianroodi, J. R.; Shanthraj, P.; Cormier, J.; Raabe, D.; Gault, B.: Understanding deformation mechanisms in superalloys through atomic scale microanalysis. TMS 2019 Annual Meeting & Exhibition, San Antonio, TX, USA (2019)
  8. 36.
    Vortrag
    Diehl, M.; Shanthraj, P.; Eisenlohr, P.; Roters, F.; Raabe, D.: DAMASK - Düsseldorf Advanced Material Simulation Kit. Seminar of the Department of Mechanical Engineering and Applied Mechanics, University of Pennsylvania, Philadelphia, PA, USA (2018)
  9. 37.
    Vortrag
    Diehl, M.; Shanthraj, P.; Eisenlohr, P.; Roters, F.; Raabe, D.: DAMASK - Düsseldorf Advanced Material Simulation Kit. Seminar of the Department of Mechanical Engineering, Villanova University, Villanova, PA, USA (2018)
  10. 38.
    Vortrag
    Roters, F.; Wong, S. L.; Shanthraj, P.; Diehl, M.; Raabe, D.: Multi-physics simulation of advanced high strength steels. Thermec 2018, Paris, France (2018)
  11. 39.
    Vortrag
    Diehl, M.; Shanthraj, P.; Eisenlohr, P.; Roters, F.; Raabe, D.: DAMASK - The Düsseldorf Advanced Material Simulation Kit for Modeling Multi-Physics Crystal Plasticity, Thermal, and Damage Phenomena. WCCM 2018, 13th World Congress in Computational Mechanics, New York, USA (2018)
  12. 40.
    Vortrag
    Roters, F.; Diehl, M.; Wong, S. L.; Shanthraj, P.; Raabe, D.: DAMASK: the Düsseldorf Advanced MAterial Simulation Kit for studying multi-physics crystal plasticity phenomena. 10 Years ICAMS - International Symposium, Bochum, Germany (2018)
 
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