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Field
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matrix composite cladding material concepts for ATFs (accident tolerant fuels) by highly innovative material tailoring. You will undertake numerical modelling work to simulate damage propagation in
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diverse range of composites topics for many years via the Composites University Technology Centre (UTC). See https://www.bristol.ac.uk/composites/collaboration/utc/ for further details, including case
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Tailoring the Thermomechanical Properties of High Performance Aerospace & Automotive Composite Materials Department of Materials Science and Engineering PhD Research Project Self Funded Dr J Foreman
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Are you an expert in the field of composite materials? Do you enjoy looking at problems from a different angle? Do you have in-depth knowledge of, and extensive working experience in
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summer schools, specialised theme meetings, and innovation and commercialisation sandpits. Description: Composite materials are used in prime and secondary applications such as aerospace, renewable energy
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content distributions from XCT scans for hybrid architecture carbon fibre composites, and subsequently develop a novel material model linking the material’s meso-structure to mechanical properties to create
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and thermomechanical actuation. You will explore the use of natural fibre composites and bio-based matrices to produce engineered living materials (ELMs). These will be 3D printed to generate bio-based
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) or equivalent experience in composites and materials science. Please view the job description and person specification for a full list of the duties and essential criteria.Please attach a personal statement
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research opportunity delves into the pioneering development of self-healing three-dimensional metal-composite hybrid materials. The innovative approach involves the utilization of through-thickness
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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