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objectives focus on characterizing powder properties and their influence on pellet formation, examining the effects of additives and manufacturing routes on fuel pellet microstructure, and investigating
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Centre de Mise en Forme des Matériaux (CEMEF) | Sophia Antipolis, Provence Alpes Cote d Azur | France | 12 days ago
context of the project: The Laser Powder Bed Fusion (LPBF) process is currently at the peak of its industrial development, thanks to its ability to produce complex geometries. However, a number of known
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mechanisms of UO₂ and high-Pu MOX fuel materials. The scientific objectives focus on characterizing powder properties and their influence on pellet formation, examining the effects of additives and
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ceramic and hydrothermal synthesis techniques Structural characterization using powder and single crystal X-ray diffraction Characterization of the properties using magnetometry and conductivity
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Particle Engineering for Next Generation Batteries, you will conduct research into new particle and powder engineering methodologies for lithium-ion battery electrode manufacture. You will collaborate within
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products, plant-based proteins, bagasse, plant-based beverages), to turn them into powdered food ingredients. In this case, the Pulse Spray Drying atomization technology will be studied, which can reduce
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to inform future design and synthesis efforts. Comprehensive characterisation of novel materials will be conducted using state-of-the-art techniques including IR, NMR, crystallography (both powder and single
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multi-layer systems using a strip casting process. The project is divided into 2 tasks, as follows: 1) Development of an optimum casting formulation based on the starting powder supplied. Optimization
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Institute of Low Temperature and Structure Research Polish Academy of Sciences | Poland | 5 days ago
durability under reaction conditions. To elucidate structure–activity relationships, the obtained materials will be in-depth characterized using advanced techniques, including powder X-ray diffraction