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innovative research in composites manufacturing. This position is suitable for an early-stage researcher looking to take the first steps towards an independent career. We are looking to appoint an expert in
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pristine samples. Secondly, foam recycling will be explored through combinations of the following potential options: using spent foam in new composite materials (e.g. polymer-polymer, polymer-foam or polymer
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on circumstances) set at the UKRI rate as a minimum (£19,237 for 2024/25). A fully funded PhD position in multiscale modelling of polymer composites is available in the group of Professor Carbone at the University
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for monitoring high-value composite materials, including Carbon Fibre Reinforced Polymer (CFRP). Collaboration between the optics and composite community is key in this project, and our researchers will work
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optical fibre, specifically designed for monitoring high-value composite materials, including Carbon Fibre Reinforced Polymer (CFRP). Collaboration between the optics and composite community is key in
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materials (e.g. polymer-polymer, polymer-foam or polymer-inorganic composites), the production of new feedstocks by thermochemical treatment of spent foam and/or the conversion of spent foam into new products
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to develop, formulate, deploy, and characterise the properties at every length scale from the molecules of the polymer matrix to the lay-up of final components, using new constituents and new architectures
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work with other researchers to develop, formulate, deploy, and characterise the properties at every length scale from the molecules of the polymer matrix to the lay-up of final components, using new
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have tried to introduce materials (e.g. metallic alloys, polymers, biodegradables), coatings (e.g. heparin, chitosan, hydrogel, carbon) and shapes (e.g. double-J, loop, mesh, string, expandable
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Advanced continuous carbon fibre reinforced polymer composites, offer a very attractive combination of mechanical properties, environmental resistance and lightweight which make them a superior