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to monitor online the manufacturing process and development of damage in the material and the incorporation of heating and cooling. The Composites and Advanced Materials Centre at Cranfield has recently
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to identify the material degradation details in extreme environments. A novel techniques/method will be developed with focus on better prediction and more accurate measurement of high temperature corrosion rate
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This PhD will be concerned with the development and proving of a self-sealing containment vessel, to be attached to a gas gun, to enable the study of the shock response of hazardous materials by AWE
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demountable adhesive joints [Bibi et al (2023), Materials today communications, 106293] There will be opportunities to engage with industries and focus groups that are engaged in adhesive joints e.g. TWI, NCC
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reduces crack propagation in composites, reduce failure due to delamination and significantly improves fracture toughness [Williams et al, Journal of Materials Science 48, 3, 1005-1013, 2013]. In addition
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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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multi-disciplinary team of researchers, from the structural engineering, material performance, composite and digital engineering teams. You will be based in two different centres, Aircraft Integration
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depending on factors such as their composition as well as external variables like storage temperature. Unfavourable conditions could reduce by many years the service life of munitions, as it could lead to
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week) About the Role You will provide comprehensive support to the Principal Investigator for running the project (Professor Zhugen Yang ), as well as provide support to 5 Researchers at postdoc and PhD
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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