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erode and damage metals. Nickel-based superalloys, oxide dispersion strengthened alloys and high-entropy alloys will all be investigated, for both their material performance and additive-manufacturability
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phenomena. The project will contribute to numerical method development as well as new understanding of flow physics and will make use of high performance computing (HPC) and advanced computational fluid
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-performance metallic components. The LPBF utilises a rapidly scanning high-power laser to scan and melt metallic powder alloys and form high-density geometrically complex end-use components. However, the LPBF
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-performance metallic components. The LPBF utilises a rapidly scanning high-power laser to scan and melt metallic powder alloys and form high-density geometrically complex end-use components. However, the LPBF
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. You will benefit from: Access to high-performance computing resources: HPC Stanedge. A comprehensive suite of commercial and open-source software (e.g., Abaqus, Ansys, COMSOL, MATLAB, PyTorch, …). A
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fluidised bed granulation for powder-based pharmaceutical manufacturing. Fluidised bed granulation processes remain a challenge to design, scale up and control, and this can result in high costs
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) Experience in the operation of different types of thermal process equipment (assessed at: application) Air heat treatment with different cooling media Vacuum heat treatment with different cooling media Set-up
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Decarbonising construction: Advanced spectroscopic approaches to understand nanostructural development and phase evolution in high-performance, low-carbon cements School of Chemical, Materials and
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leadership abilities will be crucial for success in this role. Main duties and responsibilities Remove external impediments for the team, enabling them to focus on delivery. Lead a team that develops high
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ensure the smooth day-to-day operation of the programme. The post requires excellent organisational skills and a high level of attention to detail throughout the project cycle including administrative