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Fatigue is universal, yet its individual dynamics remain poorly understood. Radboud University seeks a PhD candidate eager to explore this scientific challenge. Your primary responsibilities will be to co
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the future of Corrosion-Fatigue engineering. The application of repetitive loads results in fatigue damage that can propagate and cause catastrophic failures. The ambient conditions around a fatigue crack tip
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of corrosion fatigue life in AlSi10Mg based on microstructural characterizations. The project is part of a Villum Investigator grant titled “Microstructural engineering of additive manufactured metals - MicroAM
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vibrations in these engines. These vibrations, if not properly controlled and reduced, can lead to premature blade failure due to high-cycle fatigue, reducing the efficiency and safety of the gas-turbine
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thermal resistance – potentially modifying the coupled electro-mechanical-fluid loading and causing fatigue and early failure. This PhD project will investigate how biofouling affects the hydrodynamic
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Offshore Wind is essential if the UK is to meet targets for renewable energy generation. Dynamic subsea power cables (dSPCs), used in floating offshore technologies, are vulnerable to fatigue failure
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and hard biofouling – marine organisms that increase drag, weight and thermal resistance – potentially modifying the coupled electro-mechanical-fluid loading and causing fatigue and early failure
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measurements, data collection, and analysis. Prediction of service life and assessment of fatigue behavior of automotive structures. Preparation of research outputs, including reports, publications, and
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the confidence. The approach is capable of providing deep learning explainability and interpretability. Consider, based on drone images, the system diagnoses wrongly a problem like erosion, fatigue, etc and send
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English Appropriate background knowledge of mechanics or finite element modelling The following skills are also highly desirable: Good understanding of fracture and fatigue mechanics Good understanding