Job No.: 698996
Location: Clayton campus
Employment Type: Full-time
Graduate Research Degree: 3291 - Doctor of Philosophy (PhD)
Hiring: 2027, flexible by agreement
Duration: 3.5-year fixed-term appointment
Remuneration: AUD 41,100 per annum (tax-free stipend) (2027 rate)
Scholarship status: Funded PhD project for domestic and international applicants, subject to Monash eligibility and competitive selection.
Monash Engineering is a leading global centre for research consistently placing highly in international ranking lists. We engage with industry and other world leading institutes to carry out pioneering research that benefits society and changes the world around us. Our world-class researchers are driven by a passion and commitment to leaving a more sustainable legacy for future generations.
We are committed to training the next generation of research leaders through our graduate research degrees. Our students have the opportunity to make an impact and solve real world issues in a stimulating, supportive environment with access to cutting edge facilities.
Applications are invited from outstanding candidates for PhD study in the Department of Materials Science and Engineering within the Faculty of Engineering.
Project title: Physical Metallurgy of Hydrogen-Based Iron Oxide Reduction.
We are seeking an outstanding PhD candidate to investigate the physical metallurgy of hydrogen-based iron oxide reduction, with applications to low-carbon and green ironmaking. The project will investigate how phase transformations, reduction pathways and microstructure evolution interact during the conversion of iron oxides to metallic iron.
Particular emphasis will be placed on how temperature, gas atmosphere, starting microstructure and ore chemistry influence reduction kinetics, porosity and the morphology of the resulting iron. The candidate will combine high-temperature reduction experiments with advanced materials characterisation and modelling.
Techniques may include thermogravimetric analysis, in situ X-ray diffraction, SEM, EBSD, image analysis, thermodynamic calculations and kinetic modelling. The aim is to develop a microstructure-informed physical framework for iron oxide reduction, moving beyond purely empirical descriptions of reduction kinetics.
The candidate will be supervised by Dr Yuxiang Wu (
yuxiang.wu@monash.edu
) in a multidisciplinary environment spanning physical metallurgy, advanced characterisation, computational modelling and green ironmaking.Applicants will be considered provided they fulfil the criteria for PhD admission at Monash University. Details of the relevant requirements are available at www.monash.edu/engineering/future-students/graduate-research/how-to-apply.
Your application will be looked upon favourably if you:
Note: applicants who already hold a PhD degree will not be considered.
Applicants must show strong communication and problem-solving skills and the capacity to conduct independent, quantitative research. They should have either completed, or be in the process of completing, a Bachelors H1 Honours Degree or already hold an H1E Bachelors and/or Masters degree. Candidates who are in the process of completing their H1 degree will be considered.
To apply for a graduate research degree and/or scholarship at Monash Engineering please follow the following steps:
For enquiries about the project, please contact Dr Yuxiang Wu at
yuxiang.wu@monash.edu
.Further enquiries about the scholarship or application process should be directed to the Graduate Research Office at
eng-gradresearch@monash.edu
or visit www.monash.edu/engineering/future-students/graduate-research.Applications Close: Friday 30 April 2027, 11:55pm AEST
Supporting a diverse workforce
Monash University recognises that its Australian campuses are located on the unceded lands of the people of the Kulin nations, and pays its respects to their elders, past and present.
| Location | Clayton, North Carolina |
| Website | monash.edu/__data/assets/git_bridge/0006/509343/deploy/mysource_files/favicon.ico |
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