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biomedical engineering. Design and optimize three-dimensional printed structures using computer-aided design, numerical modelling, data-driven optimization, and artificial intelligence-assisted methods
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microstructure. An integrated numerical-experimental approach is generally adopted for this goal. A state-of-the-art computing infrastructure is in place for the numerical work in this project. PhD projects
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., plasticity, damage, fracture) in engineering materials at different length scales, which emerges from the physics and mechanics of the underlying multi-phase microstructure. An integrated numerical
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experience at the academic level. • Proficiency in using Autodesk Inventor and AutoCAD. • Proficiency in using MS Office: Word, Excel and PowerPoint. • Experience in conducting numerical research
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, the numerical methodology developed during the project will be integrated into the cluster design process. Expected Outcomes Identification of critical thermal gradient thresholds; Definition of robust design
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– mostly experimental PhD 2: Modeling and optimization of ceramic–composite systems – mostly numerical PhD 3: Design and manufacturing of ceramic–metal systems – mostly experimental As a PhD researcher, you
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optimization of ceramic–composite systems – mostly numerical PhD 3: Design and manufacturing of ceramic–metal systems – mostly experimental As a PhD researcher, you will: Conduct cutting-edge research combining