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project will combine advanced materials testing and finite element modelling to explore hydrogen-material interactions, particularly in ferritic and austenitic steels. You’ll investigate how these materials
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honours degree (GPA over 6) Master in the relevant field with a research component, preferably having a journal publication as the 1st author How to apply Apply for this scholarship at the same time you
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fields, and risk damaging the part during fabrication. Finite element analysis (FEA) models, while capable of delivering detailed spatiotemporal distributions of thermal variables, suffer from limited
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Co-supervisor’s full name & email address Dr Sean Collins: S.M.Collins@leeds.ac.uk Dr Christopher Pask: C.M.Pask@leeds.ac.uk Project summary Metal-organic frameworks (MOFs) are a class of porous
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Co-supervisor’s full name & email address Professor Richard Bourne: r.a.bourne@leeds.ac.uk Project summary Metal-organic frameworks (MOFs) have attracted extensive interest from academia and industry
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cyclic loading, varied surface conditions, and exposure to gaseous impurities, and advanced numerical modelling (Finite Element Analysis), this project aims to significantly enhance our understanding
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this field, we are looking for a PhD candidate for the development of novel multi-constituent nanopastes. Central questions are suitable paste chemistries and the interaction between organic and in-organic
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experience in microstructural analyses. Familiarity with mechanical testing procedures and, ideally, experience in numerical simulation (e.g., finite element methods). Strong analytical skills, an independent
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techniques — as well as theoretical and computational techniques that may include finite element methods, crystal plasticity theory, damage theory, molecular dynamics and advanced multiscale modelling methods
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Using finite element modelling (FEM) to simulate different hole configurations and validating these models with cadaveric femur specimens, this study will provide crucial insights to optimise