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Michael's research focuses on microstructure, mechanical properties and residual stresses in high temperature materials for the aeroengine and nuclear application. The materials he is particularly interested in are zirconium alloys used to encapsulate nuclear fuel, as well as titanium alloys and nickel-base superalloys, which are used for example in aeroengines. A central aspect of his research is to develop a more physically based understanding of how these complex materials develop their microstructure during processing and the mechanisms that determine their performance. This is achieved by using a range of state-of-the-art analytical tools that enable characterizing material in-situ and in 3D. Particularly important research tools are large-scale research facilities such as the European Synchrotron Radiation Facility in Grenoble, France and Diamond and ISIS in Oxfordshire, UK. In addition, lab based facility like advanced electron microscopy are used to provide a far more compete picture of materials than ever before.
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Kieran Lynch, Ömer Koç,Graeme Greaves,Alexander Carruthers,Mia Maric,Michael Preuss,Aidan Cole-Baker,Philipp Frankel, Joseph Robson
Journal of Nuclear Materialspp.155081, (2024)
SCRIPTA MATERIALIA (2024): 115768-115768
Materialiapp.102107, (2024)
JOURNAL OF NUCLEAR MATERIALS (2024): 154828
Journal of Materials Science & Technologyno. 13 (2023): 118-127
SSRN Electronic Journal (2023): 118957-118957
Procedia Structural Integrity (2023): 4-11
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Angus P C Wylie,Abdallah Reza, G. F. Harrison,Mark Taylor, Ben R Dacus,Felix Hofmann,Michael P. Short,Simon Kirk,Michael Preuß,Ed Pickering
Zenodo (CERN European Organization for Nuclear Research) (2023)
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