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3-Year PhD Studentship: Design and Autonomous Control of Soft Robotic Systems for Aero-Engine Repair
technologies. What you'll do You will receive training and hands-on experience in: Designing stiffness-adjustable robotic systems for confined environments Developing Vision-Language-Action (VLA) models
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within integrated motor drives demands innovative design and manufacturing solutions. Advanced additive manufacturing techniques will be explored to improve thermal management across the entire system. 3
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drives demands innovative design and manufacturing solutions. Advanced additive manufacturing techniques will be explored to improve thermal management across the entire system. 3. Electromagnetic
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electric machines for future defence and aerospace propulsion systems. The research will explore innovative machine topologies and advanced multi-physics design methodologies to enable electric machines with
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lifetime under realistic operating conditions. The research will support improved insulation design and qualification for reliable next-generation electric motors, contributing to safer, higher-performance
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offers an exciting opportunity to explore ultrathin metamaterials: a novel type of device that utilises digital and mathematical techniques to design multifunctional visual aids to help address and correct
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of mathematics, physics, electrical engineering and AI, helping to develop a theory that explains how and why these systems work — and how to design better ones. Why apply for this PhD? Work on the next-generation
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are invited for a fully-funded Industrial Doctoral Landscape Award, offered in partnership with Rolls-Royce, to tackle key challenges in the design of aeroengine oil systems using multiphase Computational Fluid
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designed to increase the knowledge, skills and aspirations of UK battery related PhD researchers, and setting up individuals for career success. The project will combine synthetic and analytical chemistry
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for the valorisation of complex waste streams that are currently considered unrecyclable. The successful candidate will gain experience in advanced materials characterisation, interdisciplinary research design, and both