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, clothing, and skin (and body), including convection, radiation, and conduction in materials. Your profile Completed Master`s degree in mechanical engineering Proven experience in continuum modeling (finite
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of materials mechanics, e.g., plasticity, porous plasticity, crystal plasticity and damage mechanics. Knowledge of micromechanical modelling. Knowledge of non-linear finite element methods. Knowledge of FFT
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( FZJ ), Max Planck Institute of Microstructure Physics Halle ( MPI-MSP ), Nanoelectronic Materials Laboratory gGmbH ( NaMLab ) in Dresden, Ruhr-Universität Bochum ( RUB ). For the initial funding
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metal joining technologies. In Tokamak Energy’s fusion pilot plant design, vanadium (V) alloys, especially V-4Cr-4Ti (V44), is the preferred FW/blanket structural material due to its outstanding thermal
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/cooling structures. (ii) Understanding the microstructural evolution of metal-ceramic interfaces under irradiation. (iii) Mapping metal-ceramic interface failure when exposed to steady-state (up to ~50 MW
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Development/upgrading solid oxide cell test setups for advanced electrochemical characterisation, including development of metal test houses Development of dedicated circuitry and analysis software
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characteristics of the microstructure of the material that can reveal the accumulated fatigue damage. This research project aims at developing the measurement technology that will make this possible. Initially
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students and senior researchers from multiple disciplines to tackle challenges in sustainable aluminium through AI-driven microstructural analysis. The NEST-WISE project offers a vibrant collaborative
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programming Merits: Experience in modelling erosion problems Understanding of critical state soil mechanics, elasto-plastic and elasto-viscoplastic models Experience in numerical analyses (using finite elements
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greater stress. The understanding of the relation between the material microstructure – grain structure, grain orientations, defects – and the in-service performance of the wheel is limited at present