SFB 1394 A02
Hoch-Durchsatz Simulationen von Versetzungs- und Korngrenzen-Defektphasen (A02)
| Coordinator | Professor Dr.-Ing. Erik Bitzek ; Julien Guénolé, Ph.D. ; Professor Dr. Jörg Neugebauer |
| Grant period | 2020 - |
| Funding body | Deutsche Forschungsgemeinschaft |
| DFG | |
| Identifier | G:(GEPRIS)437410971 |
All known publications ...
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Journal Article
Redefining plasticity in a cubic intermetallic: Dislocation dynamics in the CaAl2 Laves phase
Acta materialia 303, 121604 (2026) [10.1016/j.actamat.2025.121604]
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Nanoscale mechanisms limiting non-basal plasticity in magnesium
Acta materialia 296, 121261 (2025) [10.1016/j.actamat.2025.121261]
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Journal Article
On the Temperature and Composition Dependence of Non‐basal Stacking Faults in C14 Laves Phases
Advanced engineering materials 26(20), 2400885 (2024) [10.1002/adem.202400885]
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Defects in magnesium and its alloys by atomistic simulation : Assessment of semi-empirical potentials
Computational materials science 240, 113025 (2024) [10.1016/j.commatsci.2024.113025]
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Unveiling the mechanisms of motion of synchro-Shockley dislocations in Laves phases
Physical review materials 7(5), 053605 (2023) [10.1103/PhysRevMaterials.7.053605]
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Thermally activated nature of synchro-Shockley dislocations in Laves phases
Scripta materialia 235, 115588 (2023) [10.1016/j.scriptamat.2023.115588]
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Atomistic insights into the inhomogeneous nature of solute segregation to grain boundaries in magnesium
Scripta materialia 230, 115432 (2023) [10.1016/j.scriptamat.2023.115432]
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Atomistic structures of 〈0001〉 tilt grain boundaries in a textured Mg thin film
Nanoscale 14(48), 18192-18199 (2022) [10.1039/D2NR05505H]
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Laves phase crystal analysis (LaCA) : Atomistic identification of lattice defects in C14 and C15 topologically close-packed phases
Journal of materials research : JMR 36, 2010-2024 (2021) [10.1557/s43578-021-00237-y]
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