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M.Sc. Iyad Alhafez

Doktorand

Raum: 46/334

Telefon: +49 631 205 4287

E-Mail: alhafez(at)rhrk.uni-kl(dot)de

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Literaturliste

  • Orientation dependence in nanocutting of Fe single crystals. A molecular-dynamics study.
    Iyad Alabd Alhafez und Herbert Urbassek
    Comp.Mater.Sci., Vol. 143, S. 286 - 294. (2018)
  • Atomistic Studies of Nanoindentation - A Review of Recent Advances.
    Carlos Ruestes, Iyad Alhafez und Herbert Urbassek
    Crystals, Vol. 7, S. 293. (2017)
    DOI: 10.3390/cryst7100293
  • Collision-Induced Melting in Collisions of Water Ice Nanograins. Strong Deformations and Prevention of Bouncing.
    Maureen Nietiadi, Philipp Umstätter, Iyad Alabd Alhafez, Yudi Rosandi, Eduardo Bringa und Herbert Urbassek
    grl, Vol. 44, S. 10 - 822. (2017)
    DOI: 10.1002/2017GL075395
  • Influence of Tip Geometry on Nanoscratching.
    Iyad Alabd Alhafez, Alexander Brodyanski, Michael Kopnarski und Herbert Urbassek
    Tribology Letters, Vol. 65, Nr. 1, S. 26. (2017)
    DOI: 10.1007/s11249-016-0804-6
  • Nanocutting. a comparative molecular-dynamics study of fcc, bcc, and hcp metals.
    Iyad Alabd Alhafez, Yu Gao und Herbert Urbassek
    Curr. Nanosci., Vol. 13, (2017)
    DOI: 10.2174/1573413712666160530123834
  • Nanoscratching of iron. A novel approach to characterize dislocation microstructures.
    Nina Gunkelmann, Iyad Alhafez, Dominik Steinberger, Herbert Urbassek und Stefan Sandfeld
    Computational Materials Science, Vol. 135, S. 181 - 188. (2017)
    DOI: 10.1016/j.commatsci.2017.04.008
  • Nanoindentation of hcp metals. a comparative simulation study of the evolution of dislocation networks.
    Iyad Alabd Alhafez, Carlos Ruestes, Yu Gao und Herbert Urbassek
    Nanotechnology, Vol. 27, Nr. 4, S. 045706. (2016)
    DOI: 10.1088/0957-4484/27/4/045706
  • Scratching of hcp metals. A molecular-dynamics study.
    Iyad Alabd Alhafez und Herbert Urbassek
    Comput. Mater. Sci., Vol. 113, S. 187 - 197. (2016)
    DOI: 10.1016/j.commatsci.2015.11.038