At a Glance
- Tasks: Join a cutting-edge PhD project developing advanced coatings for aerospace engines.
- Company: Collaborate with Rolls-Royce at the University of Nottingham's renowned CDT.
- Benefits: Enjoy a tax-free stipend, tuition coverage, and tailored career support.
- Why this job: Make a real impact in aerospace sustainability while gaining invaluable research experience.
- Qualifications: Must have a UK MEng 2.1 degree or equivalent in relevant fields.
- Other info: Applications are open until filled; apply early to secure your spot!
The predicted salary is between 22700 - 30000 £ per year.
EPSRC Centre for Doctoral Training (CDT) PhD in Digital Metal with Rolls-Royce (Enhanced Stipend) Development of Advanced Barrier Coatings for extreme environments
Join to apply for the EPSRC Centre for Doctoral Training (CDT) PhD in Digital Metal with Rolls-Royce (Enhanced Stipend) Development of Advanced Barrier Coatings for extreme environments role at University of Nottingham
EPSRC Centre for Doctoral Training (CDT) PhD in Digital Metal with Rolls-Royce (Enhanced Stipend) Development of Advanced Barrier Coatings for extreme environments
2 days ago Be among the first 25 applicants
Join to apply for the EPSRC Centre for Doctoral Training (CDT) PhD in Digital Metal with Rolls-Royce (Enhanced Stipend) Development of Advanced Barrier Coatings for extreme environments role at University of Nottingham
Area
Engineering
Location
UK Other
Closing Date
Monday 13 October 2025
Reference
ENG273
EPSRC Centre for Doctoral Training (CDT) PhD in Digital Metal with Rolls-Royce (Enhanced Stipend)
Development of Advanced Barrier Coatings for extreme environments
Background
Applicants are invited to undertake a 4-year, enhanced stipend PhD studentship, within the Digital Metal CDT at the University of Nottingham. The Centre for Excellence in Coatings & Surface Eng at Nottingham is an international reference for all Thermal Barrier Coating activities. This PhD programme, in partnership with Rolls-Royce, will address key challenges for the next generation of thermal barrier coatings (TBCs) for aero-engines.
The PhD Project
Advanced TBCs are used in critical aeroengine components (e.g., Ni superalloy turbine blades) to ensure a reliable and highly efficient operation. TBCs are crucial to ensure the safe and high-performance operation of such critical parts under extreme temperatures and pressures; however, external contaminants (e.g. Calcium Magnesium Alumina and Silicates -CMAS-) can infiltrate these coatings and accelerate their degradation.
Leveraging a fundamental understanding of material science, coatings technologies and advanced thermal spray deposition systems, this research explores the development of novel protective chemistries that can be deposited in situ to protect TBC systems. By combining advanced digital technologies to evaluate the degradation of the TBC and the nature of the environmental contaminants, the project will develop advanced protective coatings to mitigate damage to these TBCs. Moreover, this project will leverage advanced bespoke continuum robotic systems to demonstrate the feasibility of applying the proposed coatings can be deployed in-situ.
Ultimately, this work bridges the gap between the theory of advanced material science and the challenges of implementation in an industrial environment. This research contributes to advance the fundamental understanding of novel protective coating systems, laying the groundwork for advanced unique intelligent coatings systems able to be customised based on the external contaminants, thus helping ensure the sustainability of the aerospace industry. The coatings will be manufactured using plasma spray and mini-combustion flame spray and examined in SEM/EBSD and tested in a burner rig and furnace thermal cycling.
As a part of a CDT cohort, you will have access to tailored courses, mentoring, career support and conference opportunities.
Qualification:
The candidate must have at least an equivalent of a UK MEng 2.1 class degree in materials/mechanical/ manufacturing/chemistry or any related discipline with at least 70 % in the project element. This is an experimental research project based at the University of Nottingham.
Funding:
The PhD studentship will cover (1) Tuition fees at UK rates (2) A tax-free stipend of up to £26,780 per annum (3) £4,000 Research training support grant
Applications, with a detailed CV and a cover letter, together with the names and addresses of two referees, should be sent directly to Prof. Tanvir Hussain ( ).
Closing date: Until Filled
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EPSRC Centre for Doctoral Training (CDT) PhD in Digital Metal with Rolls-Royce (Enhanced Stipen[...] employer: University Of Nottingham
Contact Detail:
University Of Nottingham Recruiting Team
StudySmarter Expert Advice 🤫
We think this is how you could land EPSRC Centre for Doctoral Training (CDT) PhD in Digital Metal with Rolls-Royce (Enhanced Stipen[...]
✨Tip Number 1
Familiarise yourself with the latest advancements in thermal barrier coatings and their applications in aerospace. This knowledge will not only help you during interviews but also demonstrate your genuine interest in the field.
✨Tip Number 2
Network with current or former PhD students from the EPSRC Centre for Doctoral Training at the University of Nottingham. They can provide valuable insights into the programme and may even offer tips on how to stand out as a candidate.
✨Tip Number 3
Engage with Rolls-Royce's recent projects and initiatives related to advanced materials and coatings. Showing that you are informed about their work can give you an edge in discussions during the selection process.
✨Tip Number 4
Prepare to discuss your research interests and how they align with the goals of the CDT. Be ready to articulate how your background in materials, mechanical, or chemical engineering can contribute to the development of advanced barrier coatings.
We think you need these skills to ace EPSRC Centre for Doctoral Training (CDT) PhD in Digital Metal with Rolls-Royce (Enhanced Stipen[...]
Some tips for your application 🫡
Understand the Project: Before applying, make sure to thoroughly read the project description. Understand the key challenges and objectives of the PhD in Digital Metal with Rolls-Royce, as this will help you tailor your application to demonstrate your relevant skills and interests.
Craft a Strong Cover Letter: Your cover letter should clearly express your motivation for applying to this specific PhD programme. Highlight your academic background, relevant experience, and how your research interests align with the development of advanced barrier coatings.
Highlight Relevant Qualifications: Ensure your CV showcases your qualifications that meet the requirements, such as having a UK MEng 2.1 class degree or equivalent. Include any relevant projects, research experience, or skills in materials science, mechanical engineering, or related fields.
Provide Strong References: When listing your referees, choose individuals who can speak to your academic abilities and research potential. Make sure to inform them in advance so they can prepare a strong recommendation that supports your application.
How to prepare for a job interview at University Of Nottingham
✨Understand the Project Scope
Familiarise yourself with the specifics of the PhD project, especially the development of advanced barrier coatings. Be prepared to discuss how your background in materials science or related fields aligns with the project's goals.
✨Showcase Your Research Skills
Highlight any previous research experience, particularly in experimental settings. Discuss methodologies you are familiar with, such as thermal spray deposition systems, and how they relate to the project.
✨Demonstrate Problem-Solving Abilities
Prepare to discuss potential challenges in developing thermal barrier coatings and how you would approach solving them. This shows your critical thinking and ability to apply theoretical knowledge in practical situations.
✨Engage with the Interviewers
Ask insightful questions about the CDT programme and Rolls-Royce's involvement. This demonstrates your genuine interest in the role and helps you assess if it's the right fit for you.