The mechanical properties of metallic glasses are intimately related to the formation of shear bands. Non-equilibrium Molecular Dynamics (NEMD) simulations are used to study the microscopic mechanisms of shear banding in metallic glasses. Simple model systems are considered to understand generic scenarios of shear banding in glasses. Moreover, realistic models (in particular for Pd-Ni-P) are developed by means of ab initio calculations. Then, by analyzing self-diffusion, strain maps and structural anisotropies inside and outside the shear bands, NEMD simulations with the realistic models allow for a direct comparison to the results obtained in the experiments by Prof. G. Wilde, Dr. H. Rösner and Dr. S. Divinski. The project's primary focus is to give insight into the formation of shear bands via local plastic events (such as shear transformation zones). Furthermore, nucleation of fracture processes from shear banding shall be investigated. To achieve this, various parameters of the simulation are systematically changed, using different protocols of compression and shear, the consideration of simulations at constant volume and constant pressure, and the consideration of glass samples resulting from quenches at different cooling rates.
| Wilde, Gerhard |
| Rösner, Harald | |
| Wilde, Gerhard |
Duration: 01/12/2017 - 31/12/2018 | 1st Funding period Funded by: DFG - Priority Programme, Friedrich-Schiller-Universität Jena Type of project: Subproject in DFG-joint project hosted outside University of Münster |
Duration: 01/12/2017 - 31/12/2018 | 1st Funding period Funded by: DFG - Priority Programme, Friedrich-Schiller-Universität Jena Type of project: Subproject in DFG-joint project hosted outside University of Münster |
Duration: 05/07/2012 - 31/12/2018 Funded by: DFG - Priority Programme Type of project: Main DFG-project hosted outside University of Münster |
Nollmann N, Binkowski I, Schmidt V, Rösner H, Wilde G (2016) In: Scripta Materialia, 111(null), 119-122. doi:10.1016/j.scriptamat.2015.08.030 Research article (journal) | Peer reviewed | Published | |
Hieronymus-Schmidt V, Rösner H, Wilde G, Zaccone A (2017) In: Physical Review B - Condensed Matter, 95. doi:10.1103/PhysRevB.95.134111 Research article (journal) | Peer reviewed | Published | |
Hilke Sven, Rösner Harald, Geissler David, Gebert Annett, Peterlechner Martin, Wilde Gerhard (2019) In: Acta Materialia, 171, 275-281. doi:10.1016/j.actamat.2019.04.023 Research article (journal) | Peer reviewed | Published | |
A. Davani F, Hilke S, Rösner H , Geissler D, Gebert A, Wilde G (2020) In: Journal of Applied Physics, 2020(128). doi:10.1063/5.0007564 Research article (journal) | Peer reviewed | Published |
| A universal plastic deformation mechanism for metallic glass Rösner, Harald (31/08/2017) The 16th International Conference on Rapidly Quenched and Metastable Materials (RQ16), Montan-Universität Leoben, Österreich Type of talk: scientific Talk | |
| A universal deformation mechanism for metallic glasses Rösner, Harald (17/02/2017) Bridging the Scales in Glasses III, Johannes-Gutenberg-Universität Mainz Type of talk: scientific Talk | |
| The secrets of shear bands Rösner, Harald (09/03/2016) DPG-Frühjahrstagung Sektion der Kondensierten Materie 2016. Hauptvortrag, Fachverband Metall- und Materialphysik, Universität Regensburg Type of talk: scientific Talk |