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and fatigue performance of welded thermoplastic composite structures. Develop constitutive models that accurately describe the performance of the welded interface. Implement the developed models in
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strategies. In this project you will: Perform experimental characterization of the static and fatigue performance of welded thermoplastic composite structures. Develop constitutive models that accurately
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fracture mechanisms in heterogeneous or composite materials. Development and implementation of advanced constitutive models and computational mechanics methodologies. Processing and analysis of experimental
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this project you will: Perform experimental characterization of the static and fatigue performance of welded thermoplastic composite structures. Develop constitutive models that accurately describe
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; develop or support modelling approaches that link experimental observations to predictive descriptions of the process; investigate the influence of operating conditions, gas composition, flow rate, pressure
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, load and constraints, find the composition of gears that realises it. Constraint solving and MCTS as the baseline; a learned transition/value model for ranking and pruning; LLM proposals treated strictly
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heterogeneities and depositional facies on the distribution and extent of alteration processes. Develop a systematic workflow for integrating experimental observations and reactive transport modelling to construct
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PhD in Advanced Testing, Modelling, and Simulation of Composite Materials under High Velocity Impact
11th October 2026 Languages English English English The Department of Structural Engineering has a vacancy for a PhD in Advanced Testing, Modelling, and Simulation of Composite Materials under High
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such models to water worlds will bring new challenges, such as a gas-phase composition dominated by a species (water) that may also condense in cooler regions of the atmosphere. At sufficiently low temperatures
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measurements and process-based modelling to identify the mechanisms linking vegetation, soil microorganisms and ecosystem carbon cycling. The project spans laboratory, field and ecosystem scales and combines