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Tailoring the Thermomechanical Properties of High Performance Aerospace & Automotive Composite Materials School of Chemical, Materials and Biological Engineering PhD Research Project Self Funded Dr
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energy in future energy systems with high penetration of intermittent renewables. The Energy 2050 group is involved in different research projects where a flexible operation of anaerobic digestion leads
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/scholarship Essential Application and Interview Effective organisation and time management skills Essential Application and Interview Ability to motivate high performance in others Essential Application and
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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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efficient manufacturing processes that drive significant improvements in production output, cost-effectiveness, and overall industrial performance for our customers. Our projects are collaborative and often
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. Essential Application & Interview Significant experience in high-fidelity simulations of turbulent flows, high-performance computational methods and programming. Essential Application & Interview Unique self
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lead and perform research in these areas, who will have practical experience of blast experimentation, underwater blast loading, and demonstrable computational modelling experience in a relevant area
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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