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with a strong background in experimental mechanics, composite materials, structural engineering, or a related field. Experience in mechanical testing, experimental characterization, and non-destructive
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contribute to research on laminated fibre reinforced polymer composites with a particular focus on fracture mechanics and damage tolerance. You will work with multiscale modelling of mixed mode delamination
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and polymer–fibre interfaces. Manufacturing and processing of composite materials using appropriate techniques. Mechanical, thermal, thermo-mechanical and physicochemical characterization. Investigation
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inverse methods. The general goals of AGAGE are to measure the abundances of these gases in the atmosphere and to determine emissions, transport rates and mechanisms, loss rates and mechanisms, and ozone
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, fellow anthropologists and sustainability experts on structural power composites (SPCs). These transformative materials can do two things at once: store electrical energy whilst carrying mechanical loads
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recycling technologies, including mechanical, thermo-mechanical, delamination and advanced separation processes for conventional and emerging PV modules. You will investigate material recovery and circularity
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National Aeronautics and Space Administration (NASA) | Hampton, Virginia | United States | 19 days ago
relationships of such aerospace materials as metals, intermetallics, ceramics, polymers, nano-structural, materials, bio-materials, composites and coatings. Examples of the work will vary depending on each
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carbons, fibers, graphite, nano-carbons, etc. 2. Carbons and graphite for energy storage 3. Polymer-derived fibers and composites & carbon/carbon composites 4. Unique high-temperature characterization
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Programme Grant project called “Electrical Composites” (EleComp) that involves eleven academics from Imperial College London, University of Bristol and Durham University. The successful applicant will work
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composite materials for next‑generation aeroengines. The role focuses on developing bespoke high‑rate experimental techniques and cutting‑edge simulation tools within Oxford’s Impact and Shock Mechanics