Study Material Degradation Study of Heat-Exchanger Materials and Coatings for Renewable Energy PhD at Cranfield University in the UK,

Material Degradation Study of Heat-Exchanger Materials and Coatings for Renewable Energy PhD

UK

1

What will I learn?

This is a self-funded PhD position to work with Dr Adnan Syed in the Surface Engineering and Precision Centre. The PhD project will focus studying high temperature corrosion mechanisms in details to identify the material degradation and coatings applications details in extreme environments. A novel techniques/method will be developed with focus on better prediction and more accurate measurement of high temperature corrosion rate involving mathematical models validated through simulation, experiments and analysis.Post COP26, the UK has also set a target to cut emissions of greenhouse gases to net zero by 2050. The power generation sector considers agricultural waste as a renewable energy source which can help offsetting coal combustion. Such Waste to Energy (WtE) plants produce flue gases that can have much higher levels of SOX and HCl than coal fired systems, and this can cause increased high temperature corrosion (HTC) damage to surfaces of heat-exchanger (HX) materials. Coating of HX materials in power plant boilers is widely used to mitigate HTC. Multiple routes for coating chemistry and application processes are being considered. A novel approach of multi-layered advanced material coatings system will be studied in this project .The lack of ability of early detection and timely prevention of high temperature corrosion has resulted in many HX failures leading to long term maintenance and replacement of parts.The alloy material of HX are prone to high temperature corrosion attack because of the corrosive nature of molten salt deposits and gases. The salt deposits and its direct contact with alloys material at elevated temperatures. cause high-temperature corrosion.You will investigate various alloys types and corrosion testing methods to determine a suitable alloy and coating system The project includes a detailed literature survey leads to the development of a test matrix, includes test conditions, type of alloys used including bare or coated alloys. The project includes testing the material in the facility available at Cranfield’s high temperature corrosion laboratory. A detailed analytical phase. for better understanding of the microstructure, requires working on the advanced microscopy tools such as SEM/EDX, FIB and TEM. Also use dimensional metrology for metal loss evaluation. Thermodynamics calculations using FactSage software will also be used. Also, a consideration of applying electrochemical characterisation techniques using online electrochemistry and interpret corrosion rates.You will be based at the Surface Engineering and Manufacturing Centre, which provides state-of-the-art equipment for the testing, analysis and characterisation of materials, of exposed corroded materials. This is a self-funded PhD open to UK, EU and international applicants.The Centre also holds network with the aerospace and energy sector which help the you in the result discussions, a possibility of meetings with relevant industrial clients for networking and technical guidance.

Study options

Full Time (3 Years)

Tuition fees
£28,830.00 (US$ 37,232) per year
Overseas fees - Non-technical project types: £23,525, Non-technical Monthly extension fee: £1,960, Technical Monthly extension fee: £2,400

This is a fixed fee

*Price shown is for indicative purposes, please check with institution

Application deadline

Expected July 2027

Start date

September 2026

Venue

Cranfield Campus

College Road,

Cranfield,

Bedfordshire,

MK43 0AL, Southern England, United Kingdom

Full Time (3 Years)

Tuition fees
£28,830.00 (US$ 37,232) per year
Overseas fees - Non-technical project types: £23,525, Non-technical Monthly extension fee: £1,960, Technical Monthly extension fee: £2,400

This is a fixed fee

*Price shown is for indicative purposes, please check with institution

Start date

June 2027

Venue

Cranfield Campus

College Road,

Cranfield,

Bedfordshire,

MK43 0AL, Southern England, United Kingdom

Entry requirements

For international students

Candidates should have a minimum of an upper second (2:1) honours degree (or equivalent) preferably in one of the following disciplines: Chemistry/ Material Science/ Physics/ Mechanical engineering or related fields. Candidates with a MSc degree in these disciplines will be desirable.

*There may be different IELTS requirements depending on your chosen course.

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About Cranfield University

A graduate employment or further study rate of 93 per cent reflects the strong industry alignment of Cranfield postgraduate courses.

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