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MD-Simulations on Metallic Alloys

, , , and . High Performance Computing in Science and Engineering `14, Springer International Publishing, (December 2014)
DOI: 10.1007/978-3-319-10810-0_11

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MD-simulations on metallic alloys, , , and . High performance computing in science and engineering '14 : transactions of the High Performance Computing Center, Stuttgart (HLRS) 2014, Springer, Cham, (2015)Molekulardynamische Untersuchungen der Festigkeitserhöhung gealterter Aluminium-Legierungen. Universität Stuttgart, Stuttgart, Dissertation, (2022)MD-Simulations on Metallic Alloys, , , and . High Performance Computing in Science and Engineering `14, Springer International Publishing, (December 2014)Fatigue Crack Growth Modelling in Welded Stiffened Panels under Cyclic Tension (ID: M15-018), , , and . ICF13 Bejing, (2013)Molecular dynamics simulations of tensile tests of Ni-, Cu-, Mg- and Ti-alloyed aluminium nanopolycrystals, , , , and . Articles from EUROMECH Colloquium 577 "Micromechanics of Metal Ceramic Composites", 116, page 32-43. Amsterdam, Elsevier, (2016)Molecular Dynamics Simulations—A Time and Length Scale Investigation, , and . High Performance Computing in Science and Engineering \textquotesingle19, Springer International Publishing, (2021)Molecular Dynamics Investigations of the Strengthening of Al-Cu Alloys during Thermal Ageing, , , , and . Physical mesomechanics, 20 (3): 291-304 (2017)Modelling of overload effects on fatigue crack initiation in case of carbon steel, , , and . Special Issue: 16th International Conference on New Trends in Fatigue and Fracture (NT2F16), 40, 8, page 1182-1190. Oxford, Wiley, (2017)Introducing a method of constructing realistic closed cell nano-porous iron crystals and MD simulations to investigate the influence of the system size on the stability and the mechanical properties, , , and . Proceedings of the 28th International Workshop on Computational Mechanics of Materials (IWCMM28), 166, page 150-154. Amsterdam, Elsevier, (2019)