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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
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Carbon fibre reinforced polymer (CFRP)has high specific strength and stiffness that originates from the continuous reinforcing carbon fibres. Standard joining technologies include mechanical joints
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the polymer matrix at nanoscale level where the carbon/glass fibres cannot reach. Our research shows that nanoscale reinforcement of polymer matrix used in glass/carbon fibre composites significantly
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high value manufacturing. Enhance our commitment to manufacturing and materials’ technologies (composites, graphene, thermal barrier coatings, welding and laser technology and other advanced materials
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Advances in computing, experiments, and information will continue to reshape engineering in the next decade. This PhD position will nurture a multidisciplinary innovator with the tools to unravel
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more research is required to establish the inter-dependencies between these properties with the help of high resolution images. In this research, different sets of composites material will be dynamically
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students. At the end of the project the successful applicant will be very well positioned to have a highly successful career in the water sector or in an academic role. We will help you develop into a
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development training, and dissemination opportunities from which the successful applicant can build a platform of excellence. At the end of the project the successful applicant will be very well positioned
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essential for implementing critical environmental policies. This PhD will position you at the forefront of the water sector, paving the way for a successful career in academia, consultancy, or industry
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cover tuition fees, and a stipend set at £24,000pa (inclusive of top up). Funds will be available for travel to partner meetings, selected major conference events, a high spec computer laptop, as required