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07 Fully Funded PhD Programs at Brunel University of London, Uxbridge, England

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Are you holding Master’s degree and looking for fully funded PhD positions? Brunel University of London, Uxbridge, England invites online application for multiple funded PhD Programs / fully funded PhD positions in various research areas.

Candidates interested in fully funded PhD positions can check the details and may apply as soon as possible. Interested and eligible applicants may submit their online application for PhD programs via the University’s Online Application Portal. 

1. Fully Funded PhD Position in Next-Gen Wind Turbine Blades: Whisper-Quiet Innovations with Aerodynamic Efficiency

Summary of PhD Program:

This project is an excellent opportunity for candidates who are interested in a fast-track career in Wind Turbine Industry that is allied to an environmentally sustainable energy future, or academic career in the aerodynamics, fluid mechanics and aeroacoustics fields. Joining this project means contributing to pioneering, environmentally focused research within an industrial context while advancing your professional and personal development.

Application Deadline: 15/08/2025

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2. Fully Funded PhD Position in Technologies for decarbonisation of industrial cooking of food while maintaining quality characteristics

Summary of PhD Program:

Food processing relies heavily on the combustion of natural gas to provide process and space heating. To meet decarbonisation targets over the next 10 to 15 years, the use of gas has to be replaced by alternative zero-emission energy vectors. This exciting and innovative project will make contributions to this by exploring a range of emerging electrified technologies, energy recovery technology and alternative gas-burning fuels such as green hydrogen.

Application Deadline: 31/07/2025

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3. Fully Funded PhD Position in Understanding crush behaviour of recycled 6xxx Aluminium alloys subjected to different thermomechanical treatments

Summary of PhD Program:

The net-zero and sustainability targets, as well as export cost, mean that there is an increased need to rely on a new class of alloys with higher recycle content that must be developed for both high-strength and crash-resistant alloys. Due to the differences in minor impurity additions in the recycled alloys compared with the alloys based on primary alloys, there is a need to develop new, and modify the current thermo-mechanical process used to strengthen the current generation of crush alloys. 

Application Deadline: 30/06/2025

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4. Fully Funded PhD Position in Development of natural-ageing-resistant, heat-treatable lean aluminium alloys for automotive applications

Summary of PhD Program:

This project will focus on understanding the effects of vacancy-trapping element addition and quench rate sensitivity of lean Al-Mg-Si-based alloys with varying level of recycled content on the natural ageing response at room temperature and precipitation hardening behaviour during artificial ageing treatment, with the aim of developing lean recyclable Al-Si-Mg-based alloys that are resistant to natural ageing, tolerant of slower quenching rates, and capable of offering high productivity and moderate mechanical properties for automotive applications.

Application Deadline: 30/06/2025

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5. Fully Funded PhD Position in Development of high performance and highly impurity-tolerant recycled Al alloys

Summary of PhD Program:

Aluminium recycling saves up to 95% energy and reduce 95% greenhouse gas emission compared to the primary aluminium production, therefore plays an important role in delivering Net Zero. The traditional Al recycling process requires large investment on the scrap Al sorting, and the extra cost in adding alloying elements and removing unwanted alloying elements to meet the customers specifications. Impurities is one of the biggest challenges for Al recycling. This project is aiming to develop the high impurity-tolerance and high-performance recycled Al alloys.

Application Deadline: 30/06/2025

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6. Fully Funded PhD Position in Prediction of Mechanical Properties of Extruded Aluminium Profiles Using Machine Learning and Microstructural Insights

Summary of PhD Program:

This project will focus on developing a combination of advanced machine learning and deep learning methods to enhance the predictions beyond existing data. By incorporating microstructural features into predictive models, the aim is to create a reliable data-driven modelling framework that accurately predicts mechanical properties based on the alloy composition, processing parameters and microstructural information of extruded aluminium profiles for automotive applications.

Application Deadline: 30/06/2025

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7. Fully Funded PhD Position in Investigating Nuclear Pore Complex alterations in the organisation of the NPC and during import of HIV-1

Summary of PhD Program:

We offer a fully-funded PhD position in the Castro Lab in the Biosciences Department, CHMLS. The Castro lab focuses on a cell structure, the nuclear pore complex (NPC), and explores how components of the NPC affect pore structure and function. The NPC’s primary function is the import/export of molecules between the cytoplasm and the nucleus (and vice-versa). Protruding into the nucleus, the NPC nuclear basket, functions beyond import/export, interacting with the genome.

Application Deadline: 18/06/2025

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