Skip to content
PHD opening

PhD Studentship: Irradiation Damage Resistant Refractory High Entropy Alloys for Advanced Modular Reactors with UKNNL

University of Birmingham · School of Metallurgy and Materials · United Kingdom

Back to openings

About this position

A funded 4-year UK PhD/EngD studentship is available in the group of Prof Sandy Knowles within the School of Metallurgy and Materials at the University of Birmingham, with a tax-free stipend of £26,805 per year, and includes the PANDA DFA training programme as part of the 2026 Cohort ( https://www.bangor.ac.uk/panda ).

This project is linked to UK National Nuclear Laboratory (UKNNL), who will provide industrial steer and co-supervision with Dr Paul Styman.

The UoB Materials for eXtremes (M4X - https://more.bham.ac.uk/M4X/ ) research group investigates new alloys for extreme environments from fusion/fission reactors, to aerospace gas turbines and concentrated solar power. This involves the design of fundamentally new alloys by computational methods; production through arc melting, powder metallurgy or additive manufacturing; characterisation using advanced electron microscopy and x-ray diffraction techniques; mechanical testing using macro/micro-mechanical methods and failure investigation; and environmental behaviour under oxidation/corrosion and irradiation damage.

High-entropy alloys (HEAs) are multi-component alloys comprising a minimum of four elements, each with >5at.% concentration. They have been found to demonstrate excellent corrosion and oxidation resistance, high strength, and resistance to radiation damage, especially at high temperatures 500-1000°C, and are therefore potential candidates for advanced modular reactors (AMRs). The development of HEAs is still in the early stages, so there remains a lot still to be understood about these complex alloys.

Of particular interest to the nuclear fission community is the potential for HEAs to be used in next-generation reactors, such as liquid metal cooled or fast reactors. Categories of HEAs composed of 3d transition metals and those based on refractory metals are especially promising due to their high melting points and advantageous mechanical properties up 1000°C: strength, creep and ductility. Since the components within advanced reactors will be exposed to much higher neutron doses compared to the current fleet, understanding the irradiation hardening, creep and swelling resistance will be vital, alongside corrosion/oxidation.

There is currently limited data on the response of HEAs following irradiation, therefore this project proposes to investigate the properties of AMR relevant HEAs under irradiated conditions. This research builds on an existing collaboration between UoB and NNL and would make use of their combined equipment and expertise ( https://doi.org/10.1016/j.scriptamat.2025.116733 & https://doi.org/10.1016/j.matchar.2025.115529 ). Fabrication of these alloys is possible at the UoB and subsequent irradiation can be performed within the new ‘High Flux Accelerator-Driven Neutron Facility’ & Cyclotron proton accelerator, including in-situ testing, also linking to The National Nuclear User Facility (NNUF).

Further, UoB-UKNNL HEA samples are currently being neutron irradiated at JRC Petten as part of new Materials Irradiation DevIce (MIDI), with post irradiation examination (PIE) a key part of this PhD that will be benchmarked against ion and proton irradiations. The effect of irradiation will be measured using small scale techniques such as small punch testing. Accompanying microstructural characterisation would also form part of this work to understand the underlying mechanisms that are responsible for HEAs’ promising irradiation behaviours.

The project will be supervised by Professor Sandy Knowles ( a.j.knowles@bham.ac.uk ).

For details on how to apply, please see here: https://panda.ac.uk/apply/

Funding notes:

https://panda.ac.uk

References:

  • https://doi.org/10.1016/j.actamat.2019.01.006
  • https://doi.org/10.1016/j.scriptamat.2025.116733
  • https://doi.org/10.1016/j.matchar.2025.115529
  • https://doi.org/10.1016/j.actamat.2025.121891

Funding

GBP 26,805 per year

How to apply

  1. Read the full advert on the source site — it carries the authoritative terms.
  2. Email the contact below with your CV and a short, specific message. See Emailing Professors.
  3. Prepare your SOP, CV, transcripts and referees before the deadline.
  4. Apply through the university's own portal. Never pay a fee to a third party.

Similar openings

Partially funded 23 Sept 2026

PhD Studentship: Battery degradation modelling and SOX estimation for EV applications

Oxford Brookes University · Faculty of Health, Science and Technology - School of Architecture

  • Oxford, United Kingdom
  • Faculty of Health, Science and Technology - School of Architecture
  • Prof Shahab Resalati

3 Year, full-time PhD studentship Eligibility: Open to home, EU and international students Bursary p.a: £21,805 University fees and bench fees: This studentship will cover university fees at the HOME RATE ONLY. International students and EU students without Settled Status will need to cover the difference between the home and the international fee rates. Visas and associated costs are not covered. Closing date: 23 rd October 2026 Interviews: TBC (online) Start date: January 2027 Project Title: Battery degradation modelling and SOX estimation for EV applications Director of Studies: Prof Shahab

Funding not stated 24 Sept 2026

Marie Curie AI for Proteomics PhD Position (Lilley Group) - (Fixed Term)

University of Cambridge · Department of Biochemistry

  • Cambridge, United Kingdom
  • Department of Biochemistry
  • Professor Kathryn Lilley

Location: Central Cambridge We are seeking applications for a PhD position in AI in proteomics as part of the Horizon Europe MSCA Doctoral Network, ProtAIomics. This brings together laboratories across Europe with 16 doctoral students at the interface of artificial intelligence and mass spectrometry proteomics. In collaboration with researchers at the University of Oxford, we seek a candidate to develop AI tools for the interrogation of subcellular proteomics data. We are interested to hear from candidates with experience in probabilistic or statistical modelling of complex biological data, su

Fully funded 25 Sept 2026

PhD Studentship: Super-Resolution of 4D Flow MRI for Cardiovascular Disease using Machine Learning

The University of Manchester · Department of Mechanical and Aerospace Engineering

  • Manchester, United Kingdom
  • Department of Mechanical and Aerospace Engineering

This 3.5-year PhD project is fully funded by The Department of Mechanical and Aerospace Engineering; students who are eligible to pay tuition fees at the Home rate are eligible to apply. The successful candidate will receive an annual tax-free stipend set at the UKRI rate (£21,805 for 2026/27) and tuition fees will be paid. We expect the stipend to increase each year. We recommend that you apply early as the advert may be removed before the deadline. The start date is October 2026 or January 2027. We recommend that you apply early as the advert may be removed before the deadline. Phase-contras

Fully funded 25 Sept 2026

PhD Studentship: Electromagnetic Sensing for High-Temperature Microstructural Evolution

University of Warwick · WMG

  • Coventry, United Kingdom
  • WMG

This PhD redefines electromagnetic sensing by moving beyond magnetic permeability-dominated approaches to establish a conductivity-driven eddy-current framework for tracking microstructural evolution at high temperature. The transition towards smarter, lower-carbon manufacturing demands new ways to understand and monitor how materials evolve during processing. This PhD project addresses a fundamental and timely challenge in electromagnetic (EM) sensing: how to quantitatively link electrical conductivity–dominated eddy current responses to microstructural evolution during high-temperature proce

PhD Studentship: Irradiation Damage Resistant Refractory High Entropy Alloys for Advanced Modular Reactors with UKNNL — University of Birmingham