Dr.-Ing. Matthias Markl



Organisation


Department Werkstoffwissenschaften
Lehrstuhl für Werkstoffwissenschaften (Werkstoffkunde und Technologie der Metalle)



Project lead


Fundamental mechanisms and modeling of microstructure evolution during beam and powder bed-based additive manufacturing
Dr.-Ing. Matthias Markl
(06/06/2017 - 05/06/2020)

(Ein neue Generation einkristalliner Superlegierungen: Vom Atom zur Turbinenschaufel – Festigkeitssteigernde Elementarprozesse, verfahrenstechnische Grundlagen u. skalenübergreifende Modellierung):
SFB/TRR 103 (C07): Multi-criteria calculation of optimum compositions for single crystal superalloys
Prof. Dr.-Ing. Carolin Körner; Dr.-Ing. Matthias Markl
(01/01/2016 - 31/12/2019)


Publications (Download BibTeX)

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Markl, M., Ammer, R., Rüde, U., & Körner, C. (2015). Numerical investigations on hatching process strategies for powder-bed-based additive manufacturing using an electron beam. International Journal of Advanced Manufacturing Technology, 78(1-4), 239-247. https://dx.doi.org/10.1007/s00170-014-6594-9
Markl, M. (2015). Numerische Modellierung und Simulation des selektiven Elektronenstrahlschmelzens basierend auf einer gekoppelten Gitter Boltzmann und Diskrete Element Methode (Dissertation).
Bauer, M., Schornbaum, F., Godenschwager, C., Markl, M., Anderl, D., Köstler, H., & Rüde, U. (2014). A Python extension for the massively parallel framework waLBerla. In online (pp. 1-8). New Orleans, US.
Ammer, R., Ljungblad, U., Markl, M., Körner, C., & Rüde, U. (2014). Simulating fast electron beam melting with a parallel thermal free surface lattice Boltzmann method. Computers & Mathematics With Applications, 67(2), 318-330. https://dx.doi.org/10.1016/j.camwa.2013.10.001
Ammer, R., Markl, M., Jüchter, V., Körner, C., & Rüde, U. (2014). Validation Experiments for LBM Simulations of Electron Beam Melting. International Journal of Modern Physics C, 1-9. https://dx.doi.org/10.1142/S0129183114410095
Markl, M., Ammer, R., Ljungblad, U., Rüde, U., & Körner, C. (2013). Electron beam absorption algorithms for electron beam melting processes simulated by a three-dimensional thermal free surface lattice Boltzmann method in a distributed and parallel environment. Procedia Computer Science, 18, 2127-2136. https://dx.doi.org/10.1016/j.procs.2013.05.383

Last updated on 2016-26-05 at 04:48