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Home » Institute » Departments & Research Groups » Micromechanical and Macroscopic Modelling » MMM Publications

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  • D. Matschkal-Amberger, M. Kolb, S. Neumeier et al. New flat-punch indentation creep testing approach for characterizing the local creep properties at high temperatures. Materials & Design, 183, 108090, (2019)
  • Z. Wang, T. Sun, H. Zhang et al. The interaction between grain boundary and tool geometry in nanocutting of a bi-crystal copper. International Journal of Extreme Manufacturing, 1, 045001, (2019)
  • J. Engels. An inverse analysis approach for parameterization of non-local crystal plasticity modeling using sphero-conical nanoindentation. PhD Thesis, Ruhr-Universität Bochum, (2019)
  • M. Ramaswamy Guru Prasad, N. Vajragupta, A. Hartmaier. Kanapy: a Python package for generating complex synthetic polycrystalline microstructures. Journal of Open Source Software, 4, 1732, (2019)
  • B. Schaefer, P. Sonnweber-Ribic, H. Hassan et al. Micromechanical modeling of fatigue crack nucleation around non-metallic inclusions in martensitic high-strength steels. Metals, 9, 1258, (2019)
  • M. Boeff, H. Hassan, A. Hartmaier. On the numerical modeling of nucleation and growth of microstructurally short cracks in polycrystals under cyclic loading. Journal of Materials Research, 34, 3523-3534, (2019)
  • J. Engels, N. Vajragupta, A. Hartmaier. Parameterization of a non-local crystal plasticity model for tempered lath martensite using nanoindentation and inverse method. Frontiers in Materials, 6, 247, (2019)
  • B. Schaefer, P. Sonnweber-Ribic, A. Hartmaier. Micromechanical modelling of the influence of strain ratio on fatigue crack initiation in a martensitic steel. Materials, 12, 2852, (2019)
  • X. Huang, R. Janisch. Partitioning of interstitial segregants during decohesion: a DFT case study of the Σ3 symmetric tilt grain boundary in ferritic steel. Materials, 12, 2971, (2019)
  • W. Amin, M. Ali, N. Vajragupta et al. Studying grain boundary strengthening by dislocation-based strain gradient crystal plasticity coupled with a multi-phase-field model. Materials, 12, 2977, (2019)
  • C. Wang, M. Ali, S. Gao et al. Combined phase-field crystal plasticity simulation of P- and N-type rafting in Co-based superalloys. Acta Materialia, 175, 21-34, (2019)
  • D. Reimann, K. Nidadavolu, H. Hassan et al. Modeling macroscopic material behavior with machine learning algorithms trained by micromechanical simulations. Frontiers in Materials, 6, 181, (2019)
  • O. Shchyglo, G. Du, J. Engels et al. Phase-field simulation of martensite microstructure in low-carbon steel. Acta Materialia, 175, 415-425, (2019)
  • Z. Wang, H. Zhang, Z. Li et al. Crystal plasticity finite element simulation and experiment investigation of nanoscratching of single crystalline copper. Wear, 430-431, 100-107, (2019)
  • A. Biswas, M. R. G. Prasad, N. Vajragupta et al. Influence of microstructural features on the strain hardening behavior of additively manufactured metallic components. Advanced Engineering Materials, 21, 1900275, (2019)
  • L. Liu, Z. Xu, D. Tian et al. MD simulation of stress-assisted nanometric cutting mechanism of 3C silicon carbide. Industrial Lubrication and Tribology, 71, 686-691, (2019)
  • S. Gao, Z. Yang, M. Grabowski et al. Influence of excess volumes induced by Re and W on dislocation motion and creep in Ni-base single crystal superalloys: a 3D discrete dislocation dynamics study. Metals, 9, 637, (2019)
  • H. Sajjad, S. Hanke, Sedat Güler et al. Modelling cyclic behaviour of martensitic steel with J2 plasticity and crystal plasticity. Journal of Materials MDPI, 12, 1767, (2019)
  • Y. Schneider, A. Bertram, T. Böhlke. Three-dimensional simulation of local and global behaviour of αFe-Cu composites under large plastic deformation. Technische Mechanik, 33, 34-51, (2019)
  • A. Subramanyam, A. Azócar Guzmán, S. Vincent et al. Ab initio study of the combined effects of alloying elements and H on grain boundary cohesion in ferritic steels. Metals, 9, 291, (2019)
  • D. Gaertner, K. Abrahams, J. Kottke et al. Concentration-dependent atomic mobilities in FCC CoCrFeMnNi high-entropy alloys. Acta Materialia, 166, 357-370, (2019)
  • B. J. Schäfer, X. Song, P. Sonnweber-Ribic et al. Micromechanical modelling of the cyclic deformation behavior of martensitic SAE 4150—a comparison of different kinematic hardening models. Metals, 9, 368, (2019)
  • B. Schaefer, X. Song, P. Sonnweber-Ribic et al. Micromechanical modelling of the cyclic deformation behavior of martensitic SAE 4150—a comparison of different kinematic hardening models. Metals, 9, 368, (2019)
  • S. Rooein. Experimental analysis and micromechanical modeling of gas diffusion layers (GDL) for PEM fuel cell application. (2019)
  • Z. Wang, J. Zhang, Z. Xu et al. Crystal plasticity finite element modeling and simulation of diamond cutting of polycrystalline copper. Journal of Manufacturing Processes, 38, 187-195, (2019)
  • Z. Zhou, S. Sun, L. Zou et al. Enhanced strength and high temperature resistance of 25Cr20Ni ODS austenitic alloy through thermo-mechanical treatment and addition of Mo. Fusion Engineering and Design, 138, 175–182, (2019)
  • C. Bonnekoh, U. Jäntsch, J. Hoffmann et al. The brittle-to-ductile transition in cold rolled tungsten plates: impact of crystallographic texture, grain size and dislocation density on the transition temperature. International Journal of Refractory Metals and Hard Materials, 78, 146-163, (2019)
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