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of the key challenges facing the hydrogen economy: understanding how hydrogen interacts with the complex microstructures of circular steels and causes degradation and failure. This position is part of
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microstructure. An integrated numerical-experimental approach is generally adopted for this goal. A state-of-the-art computing infrastructure is in place for the numerical work in this project. PhD projects
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., plasticity, damage, fracture) in engineering materials at different length scales, which emerges from the physics and mechanics of the underlying multi-phase microstructure. An integrated numerical
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embrittlement (HE) in circular steels, with a particular focus on the role of tramp elements at experimentally informed microstructural features. You will combine first-principles modelling and machine-learning
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processing to the formation of undesirable phases in the final microstructure. This challenge is particularly relevant for martensitic stainless steels, a technologically important class of materials whose
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” or impurities can significantly affect steel quality, causing issues ranging from surface cracking during processing to the formation of undesirable phases in the final microstructure. This challenge is