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SFI FAST: PhD position in Microstructure/texture evolution during extrusion of scrap-based Aluminium
15th March 2026 Languages English English English The Department of Materials Science and Engineering has a vacancy for a SFI FAST: PhD position in Microstructure/texture evolution during extrusion
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technologies (such as computing and sensing), and low-temperature energy systems for space and satellite applications. The project investigates how microstructural design in polycrystalline functional oxides
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world. You will find more information about working at NTNU and the application process here. About the position Studies of phase formation, evolution of microstructure and casting defects in high
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cookie and refresh page to watch video, or click here to open video) About the position Studies of phase formation, evolution of microstructure and casting defects in high-pressure die casting of recycled
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on high recycled content. The research will address process–microstructure–property relationships, weld integrity, die design, and product quality in extrusion of complex profiles from post-consumer scrap
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investigates how microstructural design in polycrystalline functional oxides, such as grain size, crystallographic orientation, and strain, can be used to enhance and control the caloric cooling performance
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Aluminium Alloys We are seeking a highly motivated PhD candidate to join a project focused on understanding how the microstructural heterogeneity of recycled aluminium alloys affects their ductility and
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Aluminium Alloys We are seeking a highly motivated PhD candidate to join a project focused on understanding how the microstructural heterogeneity of recycled aluminium alloys affects their ductility and
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for space and satellite applications. The project investigates how microstructural design in polycrystalline functional oxides, such as grain size, crystallographic orientation, and strain, can be used
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Entropy Alloy (HEA) compositions suitable for Additive Manufacturing (AM) Develop a multiscale methodology to select compositions and microstructure with optimized fraction Establish and optimise Powder Bed