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inspection, develop a database of raw and processed thermographic images of different defects - geometries on composites, test of thermographic image processing tools and techniques (all applicable
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industrialise algorithms designed to simulate and optimise the operation and design of aircraft systems, subject to complex, real-world constraints. You will join a growing team of engineers working on a range of
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setup fitted on the tribometer, its operation, testing its capabilities, running experiments and formulating protocols for its optimum use in various operating conditions. The aim is to establish
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) and the School of Chemistry (Prof Andrew Hector and Prof Nuria Garcia-Araez). Your role will involve glass manufacture, characterisation and development of the fusion draw process. You will work closely
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you will need to evaluate all active thermography approaches for composites inspection, develop a database of raw and processed thermographic images of different defects - geometries on composites, test
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field. Expertise in composite materials and their behavior under different loading conditions. Experience with manufacturing techniques for composites (e.g., autoclave processing, additive manufacturing
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, characterisation and development of the fusion draw process. You will work closely with research fellow (Dr Ajay Saroja) and an experienced glass technician (Chris Craig). The project will also benefit from
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manufacturing techniques for composites (e.g., autoclave processing, additive manufacturing). Proficiency in computational tools such as ANSYS, LS-DYNA3D, Abaqus, or similar FEA software. Excellent written and
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on encapsulation materials and processes to improve durability and reliability and requires knowledge of textile manufacturing, materials and testing. E-Textile wireless sensing utilising RFID technology to monitor
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fellow with skills and knowledge to complement our team. In this role, you will work with others to design and create glass layers via processes such as flame hydrolysis deposition and various