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the interplay between casting defects and a heterogeneous microstructure, their fracture behaviour often exhibits significant scatter. Improving the understanding of the mechanisms governing this variability is
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casting defects and a heterogeneous microstructure, their fracture behaviour often exhibits significant scatter. Improving the understanding of the mechanisms governing this variability is essential
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evaluation is desirable. Good understanding of microstructure–property relationships in structural alloys. Knowledge of fracture mechanics and experience with fracture experiments would be an advantage
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• Applicants should have a PhD degree in civil or mechanical engineering or related disciplines • Possess fundamental knowledge in fatigue and fracture, structural integrity assessments and data driven
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students and is rapidly expanding its range of education and research activities. We are looking for a Researcher to conduct innovative experimental studies investigating fracture mechanisms under various
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macroscopic fracture energy Gc of a foam-bonded granular medium, under stable tensile crack growth. • (O2) Identify crack-growth mechanisms at the grain/bond scale (e.g. debonding, binder rupture) and that
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The School of Mechanical & Aerospace Engineering (MAE) is a robust, dynamic and multi-disciplinary international research community comprising of world-class scientists and bright students. MAE
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The School of Mechanical & Aerospace Engineering (MAE) is a robust, dynamic and multi-disciplinary international research community comprising of world-class scientists and bright students. MAE
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materials. Experience in mechanical testing methodologies, including wear assessment, fracture strength evaluation, and fatigue testing, alongside chemical analysis techniques like ion leaching and
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datasets. Experience in the numerical modelling of stress and pore pressure to investigate shallow crustal deformation processes. Experience of or familiarity with experimental rock mechanics and/or gas