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Field
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We are looking for a highly motivated candidate to pursue a PhD programme titled "CFD-informed finite element analysis for thermal control in wire-arc directed energy deposition." This research
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framework exploiting the use of physical and geometrical conservation laws in a variety of spatial discretisation schemes (i.e. Finite Element, Finite Volume, Meshless). The resulting conservation-type
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framework exploiting the use of physical and geometrical conservation laws in a variety of spatial discretisation schemes (i.e. Finite Element, Finite Volume, Meshless). The resulting conservation-type
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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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industry, a Regulatory Authority or relevant doctoral/post-doctoral research. We are seeking candidates with experience of: Communicating complex scientific issues, in writing and face-to-face, with clarity
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Location: UK Other Background Applicants are invited to undertake a 4-year, enhanced stipend PhD studentship, within the Digital Metal CDT digitalmetal-cdt.ac.uk at the University of Nottingham
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are contaminated with (for example) Cu or Zn either prior to welding (or to weld repair), the potential exists for cracking through either liquid metal embrittlement (LME) or solid metal-induced embrittlement (SMIE
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efficiency. Secondly, they are also resistant to corrosion resulting in lower maintenance costs and longer component lifetimes. Furthermore, they require significantly less energy to produce and are easier
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the effect of minor elements addition and their interplay with elements from EoL-scrap on the alloy corrosion performance. To investigate the mechanisms of the effects of different elements
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Fe7W6 intermetallic at the interface. New manufacturing strategies are needed to create dissimilar material bonds to tungsten for component joining and the validation of their structural integrity