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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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the potential to decarbonise automotive and aerospace industries. Design of super-durable composite materials that can sustain harsh hydrogen environments is critical to achieving decarbonisation goals
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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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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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PhD Studentship in Condensed Matter Physics: Modelling colour centres in diamond and related materials for application as QUBITs Award Summary 100% fees covered, and a minimum tax-free annual living
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company is interested in environmental barrier coatings (EBCs) for the next generation of ceramic matrix composite (CMC) components to achieve NetZero in aviation. The PhD Project The aerospace industry is
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Project title: Atomistic Simulations of Surface Chemistry underpinning the Atomic-Scale Processing of Materials for AI-driven Nanoelectronics Applications Supervisor: Dr. Bora Karasulu (Assistant
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Award summary 100% fees covered, and a minimum tax-free annual living allowance of £19,237 (2024/25 UKRI rate). Overview Diamond is a material of extremes, known not only for its extreme hardness
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, these allow flexible descriptions of atomic environments [1] . This flexibility comes with the challenge of needing to choose parameters for these models that accurately describe complex material processes and
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. This project will consider systems of reaction-advection-diffusion equations both computationally and analytically. These find application to modelling corrosion/ageing in materials, where diffusion of a