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one of the world’s leading centres for additive manufacturing research and development, invites applications for a fully funded PhD programme. Metal additive manufacturing is transforming how complex
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EPSRC Centre for Doctoral Training (CDT) PhD in Digital Metal with Rolls-Royce (Enhanced Stipend) Development of Advanced Barrier Coatings for extreme environments Background Applicants are invited
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/or dynamic analysis of mechanical/robotic systems •Ability to use finite element modelling and to simulate complex mechatronics •Ability to implement control and kinematics with hardware-in-the-loop
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language), finite element modelling or computational fluid dynamics, composites mechanics, composites manufacturing, statistical modelling. Funding support After a suitable candidate is found, funding is
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strategies and levels of fidelity. By the end of the project, the student will demonstrate the integration of ML-based boundary layer models within an open-source finite volume CFD code and quantify
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Composites and phases with enhanced hydrogen density for hydrogen storage, increased ion mobility for hydrogen storage as well as solid ion conductors and low enthalpy metal hydrides for hydrogen compressors
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be used to characterise the beneficial effects of coatings aimed at increasing component lifetimes; and in future could be developed to study the effect of more damaging surface phenomena. Motivation
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-term high-temperature service in oxidizing conditions. Moreover, the method will be used to characterise the beneficial effects of coatings aimed at increasing component lifetimes; and in future could be
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are available under the same funding arrangement at salary level appointed at up to University of Nottingham R&T spine point 35 or Clinical Doctor in Training spine point 02. Please note that the salary level is
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well as explore design of downstream components including novel chemical separators and co-factor recycling units. The student will test efficacy of commercial enzymes for the synthesis of medicine intermediates