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embrittlement (HE) in circular steels, with a particular focus on the role of tramp elements at experimentally informed microstructural features. You will combine first-principles modelling and machine-learning
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27 Sep 2026 Job Information Organisation/Company Delft University of Technology (TU Delft) Research Field Mathematics » Combinatorial analysis Mathematics » Discrete mathematics Researcher Profile
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progressive interfacial damage development as a function of fatigue loading. The models will be implemented and validated in commercial finite element (FE) software. The resulting FE model will define
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will be implemented and validated in commercial finite element (FE) software. The resulting FE model will define the digital twin of the welded structure and provide the basis for the second PhD project
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manufacturing approaches, investigating melt behaviour, densification, defect formation, and microstructure in materials. A distinctive element of the project is its data-driven approach. Together with colleagues
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Job description The Discrete Mathematics and Optimization group within the Delft Institute of Applied Mathematics at TU Delft is offering a full-time PhD position in the area of combinatorics
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-element modeling using COMSOL · An interest in biological systems and in connecting theoretical models with experimental observations · Enthusiasm, self-motivation, creativity, and team spirit · Excellent
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, increasing steel circularity introduces microstructural complexity through tramp elements, precipitates, inclusions and segregation phenomena. While considerable progress has been made in understanding
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embrittlement is one of the major barriers to the safe deployment of hydrogen technologies. At the same time, increasing steel circularity introduces microstructural complexity through tramp elements
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damage development as a function of fatigue loading. The models will be implemented and validated in commercial finite element (FE) software. The resulting FE model will define the digital twin