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Field
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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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of composite materials especially fatigue analysis of composite materials•Excellent programming skills (Python, Fortran, Mathematica, MATLAB, or similar).•Strong analytical and problem-solving abilities
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in sustainable chemistry towards composite materials. The research project comprise development of a reactive fractionation method to generate building blocks for synthesis of recyclable composite
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The aims of the research are to develop efficient and accurate computational and experimental methodologies for characterising hybrid, multifunctional 3D printed fibre-polymer composites and explore
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The scholarship will be suited to a materials/polymer scientist and/or chemical engineering student willing to develop skills in polymer chemistry and materials upcycling. The scholarship will be
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conducted with different composite material parameters (thickness, lay-up, and types of fibre and matrix) in order to develop optimised FML composites with high durability and fatigue life. The expected
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practice, and the development of quality assurance processes for qualification. The parent composite materials for repair could include thermoset and/or thermoplastic carbon fibre reinforced polymers. Value
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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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from raw drinking waters, using novel magnetic composite materials. Objectives The student will be directly involved in both the synthesis of the novel magnetic materials (in collaboration with Prof