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control over microstructural features which leads to uncertainty over the resulting mechanical behavior of the scaffolds. This project, funded by Novo Nordisk Foundation, focuses on bioprinting and
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, microstructural and chemical analysis of materials analyzing the (electro)catalytic performance in various heterogenous organic reactions electrochemical characterization of carbon materials operando and in-situ
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constituents of its microstructure. You will develop inverse-analyses of the in situ imaging experiments to extract the non-linear stress/strain relationships. You will design critical in situ X-ray and neutron
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-on experience in: Additive manufacturing of High Entropy alloys and Al-based alloys Powder characterization – Microstructure characterization (SEM, EBSD, TEM, XRD) Mechanical testing (tensile, fatigue, creep
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to correlate sensor data with process induced defects, microstructure, and material performance. Interact with industrial partners, other research organizations, and universities related to advanced
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(tensile, hardness, nanoindentation, metallography) and microstructural characterization techniques (SEM, EBSD, OM) Experience with metallographic specimen preparation Knowledge of mechanical properties
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(tensile, hardness, nanoindentation, metallography) and microstructural characterization techniques (SEM, EBSD, OM) Experience with metallographic specimen preparation Knowledge of mechanical properties
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surface structures and microstructures using various spectroscopic and microscopic techniques including but not limited to SEM, XRD, TEM, XPS. • Evaluate the gas sensing properties and performance