Prof R Cheung
Top university
2 years ago
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Sensing system development for aviation University of Edinburgh in United Kingdom
Degree Level
PhD
Field of study
Biochemistry
Funding
Full funding availableDeadline
Expired
Country
United Kingdom
University
University of Edinburgh

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Keywords
Biochemistry
Computer Science
Systems Engineering
Signal Processing
Mechanical Engineering
Experimental Physics
Electrical Engineering
Materials Science
Nanotechnology
Material Science
Aerospace Engineering
Marine Engineering
Physical Chemistry
Cybersecurity
Innovation Studies
Automotive
Automotive Engineering
Renewable Energy
Manufacturing Engineering
Structural Engineering
Solid Mechanics
Electronic Engineering
Impact Dynamics
English Language Teaching
Sensing Technology
Internet Of Things
Electronics Engineering
Bioinorganic Chemistry
Integrated Care
Microfabrication
Electron Beam Lithography
Aviation
Aviation Technology
Structural Health Monitoring
Ion Acceleration
Atomic Layer Deposition
Accelerometer
Sensing Systems
Aviation Engineering
Nanofabrication
Integrated Studies
Multifunctional Materials
Displacement
Smart Sensors
Dynamics And Vibrations
Processing In Memory
Cryogenic Sensing
Cyber Security
Sfi Centre For Research Training
Composite Materials
Epsrc Midas
Postdocs
(micro)fabrication
Studentship
Master's Degree
Commercialisation
Forest Defence
Scottish Microelectronics Centre
Autonomous Sensing Platforms
External Loads
Leonardo Spa
Bespoke Training
Cmos Hardware
Measurement Technologies
Specialised Theme Meetings
In-situ Damage Systems
Etching
Inclination
Micro Nano Fabrication Technologies
Nanocomposite-based Sensors
Sandpits
Research Theme
Continuous Embedded Sensors
Summer Schools
Impact Damage
Piezoelectric Sensors
Atas Certificate
Advanced Courses
Strain Gauges
Experimental Collaborations
Catastrophic Failures
Clean-room Skills
Contact Sensors
2.1 Hons Degree
About this position
Summary:Applications are invited for a 4-year PhD studentship within the new established EPSRC funded Centre for Doctoral Training in Sensing, Processing, and AI for Defence and Security (SPADS). The program involves both a PhD research project and integrated studies as part of a cohort of like-minded students. The integrated studies will include advanced courses and bespoke training events such as 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, marine and automotive. Their intensive use exposes them to various external loads through their lifecycle. One of the most frequent catastrophic failures during the service life of a composite structure can be occurred with vibrations and impacts. In-situ damage systems for damage detection cam be used for Structural Health Monitoring (SHM). The methods include either local, global or combined responses. The system measures displacement, acceleration or inclination by using various types of contact sensors such as strain gauges, accelerometer, piezoelectric sensors etc. However, in some cases there are economic and practical issues such as the installation of wires in the composite structure that may lead to deterioration of the mechanical properties. The need for in-situ damage detection and localization due to either static or dynamic indentation has increased the interest in multifunctional materials and structures.The proposed project will develop smart sensors in composite materials that can detect impact damage for aviation. To this end, the project aligns to research theme beyond CMOS hardware, and to some extent sensor signal processing and autonomous sensing platforms. The aim of this PhD is the development of continuous embedded sensors that localize and detect impact damage in composite structures. Objectives: · Study and fabrication of compatible sensors with common composite materials;· Development of composite materials with the embedded sensing system and determination of the damage location from signal processing;· Perform impact characterization of the manufactured composites with sensors and localize the damage with signal processing;Dissemination and exploitation activities.The position is open for candidates interested in performing experiments in developing advanced nanocomposite-based sensors. Experience in micro nano fabrication technologies (e.g. lithography, etching, atomic layer deposition) is a plus in the selection process. The successful candidate will have access to the Scottish Microelectronics Centre for the fabrication of the designed devices. Training on nanofabrication, measurement technologies and clean-room skills will be undertaken. The successful candidate will work closely with other PhDs and postdocs involved in similar investigations. Experimental collaborations: The project will be developed in collaboration with Leonardo SpA.Students are expected to hold a 2.1 Hons degree or above, or equivalent, in Electronics and Electrical Engineering, Physics, Chemistry, Material Science or related discipline. A Master’s degree in one of the above fields would be advantageous. Applicants who require an ATAS certificate to work study in the UK will not be eligible for this PhD programme. A list of nationalities that do not require ATAS certification can be found here - https://www.gov.uk/guidance/find-out-if-you-require-an-atas-certificateFurther information on English language requirements for EU/Overseas applicants.
Funding details
Full funding including tuition fees and living expenses is available for this position. The scholarship covers all educational costs and provides a monthly stipend.
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