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on structural battery electrolytes, including: synthesis of polymer electrolytes and multifunctional materials, electrochemical characterisation of battery systems, microscopy and microstructure analysis
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the effect of thermal tempering on thin film microstructure while focusing on the evolution of mechanical properties and adhesion. Different thin film stack architectures will be synthetized by PVD techniques
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. These treatments will be applied either chemically and/or physically (plasma treatment) and either at the roving level (impregnation line) or at the fabric level (scarfing). Where to apply Website https://www.imt
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Magnets for New Energy and MObility Applications“ funded by the European Union (ERC, MagNEO, 10522110, https://magneoproject.eu/ ). The project aims to develop new alloy material for permanent magnets
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methodology to evaluate the behavior of new cemented carbides through the microstructural and tribo-mechanical characterization of the new materials. Validate the behavior of new cemented carbides in industrial
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its employees in reconciling work and family life and regularly undergoes the audit berufundfamilie® . Further information at: http://www.ifw-dresden.de . The Institute for Materials Chemistry, Group
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the presence of a fatigue limit and its influence on component longevity. After analyzing the results of these tests, and if improvements are deemed necessary, new specimens with optimized microstructures will
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optimization of laser deposition coating processes using combined wire and powder feed, including numerical simulation of interface bonding mechanisms, microstructure evolution, and process parameter
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at the 'Group of Smart Nanoengineered Materials, Nanomechanics and Nanomagnetism -Gnm3' (https://jsort-icrea.uab.cat/) of the Universitat Autònoma de Barcelona (UAB). The position is in the framework
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properties, chemistry, physical, structural and microstructural properties. New compositions will be designed and characterized to improve the thermal behavior under cooling. Moreover, the activity will