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of telepresence robots, remotely operated by volunteers or health care professionals, as well as operating autonomously, to provide more pro-active and frequent social interaction and structured support for
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knowledge, facilities, education, and research. Further information about the project can be found at https://nationalrehabilitationcentre.nhs.uk/. Due to their compliant nature, soft robotic devices
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-long compliant snake robot capable of self-localisation for inspection in fusion power plants Rolls-Royce University Technology Centre (UTC) in Manufacturing and On-Wing Technology, The University
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facilities in the CfAM engaging with interdisciplinary team with expertise in 3D printing, bio-printing for medical applications, micro-robotics, and materials science. PhD project description: The field
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hybrid tooling solutions to enable in-situ/on-wing repair and maintenance of gas turbine engines. At the Rolls-Royce UTC at University of Nottingham we have developed robotic systems capable to navigate
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-Royce to develop smart and robotic solutions to enable in-situ/on-wing repair and maintenance of gas turbine engines. At the Rolls-Royce UTC at University of Nottingham we have developed robotic systems
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facilities in the CfAM engaging with interdisciplinary team with expertise in 3D printing, soft robotics, and materials science. Project description: 3D-printing of soft robotics is a growing field, with many
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@nottingham.ac.uk Additive Manufacturing (3D-Printing) of soft robotic structures for wearable devices Due to their compliant nature, soft robotic devices are of significant interest in healthcare applications where
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of robots and its sensing solutions to perform tasks in challenging working environments. This project is related to the development of smart mechanisms and sensing to support the aforementioned tasks
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the manufacturing industry. This project will be part-funded by the UK Atomic Energy Authority’s RACE (Remote Applications in Challenging Environments, https://www.race.ukaea.uk) robotics and remote