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Ehsan Ghassemali

2 weeks ago

Postdoctoral Researcher in Burn-Resistant Alloy Development for Space Applications Jönköping University in Sweden

Degree Level

Postdoc

Field of study

Mechanical Engineering

Funding

The position is a fully funded, two-year, full-time postdoctoral appointment supported by the IRON-X project (Swedish National Space Agency). Employment includes individual salary settings and is covered by collective agreements. No tuition fees apply.

Deadline

Expired

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Country

Sweden

University

Jönköping University

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Keywords

Mechanical Engineering
Materials Science
Aerospace Engineering
High-throughput Screening
Space Exploration

About this position

Jönköping University’s Department of Materials & Manufacturing is seeking a Postdoctoral Researcher to join an innovative project on burn-resistant alloy development for space exploration applications. The research is part of the IRON-X project, funded by the Swedish National Space Agency, and is conducted in close collaboration with the Swedish aerospace industry. The department is known for its multidisciplinary research environment, focusing on the properties and manufacturing processes of metallic components, especially cast components.

The main research goal is to develop high-performance metallic materials that are resistant to burning or combustion in high-pressure, high-purity oxygen environments, targeting components for space travel combustion engines. The project involves computational thermodynamics (CALPHAD), high-throughput computational screening for alloy design, experimental alloy production (casting and/or additive manufacturing), and comprehensive testing and characterization of the designed materials. Benchmarking against existing solutions and maintaining industrial relevance are key aspects, with a strong emphasis on environmental, economic, and societal impacts.

The position is a two-year, full-time postdoctoral appointment starting June 1, 2026, or as soon as possible thereafter. The role is primarily research-focused (minimum 80%), with some educational responsibilities (maximum 20%), and may include co-supervision of postgraduate students. The successful candidate will work in a collaborative, international environment and benefit from the university’s dynamic and globally connected workplace, located in the city center of Jönköping, Sweden.

Applicants must hold a Doctorate degree in physical mechanical metallurgy, materials science and engineering, or a related field, preferably obtained within the last two years. Experience with microstructural and physico-mechanical characterization techniques (such as SEM, TEM, XRD, EDS, EBSD, FIB/SEM, tensile, compression, DSC/TGA), alloy design strategies, and high-throughput screening algorithms is highly valued. The ability to supervise students, publish in reputable journals, and maintain good research practices is required. Hands-on experience in combustion or burn-resistant testing is an advantage. Proficiency in English is expected.

The position is fully funded, with individual salary settings and collective agreements. No tuition fees apply. The application deadline is February 28, 2026. To apply, candidates should submit a cover letter (including their vision for contributing to the research environment and IRON-X goals), CV, certified certificates and diplomas, two references, five selected publications, and their doctoral thesis via the Varbi system.

For more information, visit the official job posting or contact Professor Ehsan Ghassemali at Jönköping University.

Funding details

The position is a fully funded, two-year, full-time postdoctoral appointment supported by the IRON-X project (Swedish National Space Agency). Employment includes individual salary settings and is covered by collective agreements. No tuition fees apply.

What's required

Applicants must have been awarded a Doctorate degree, preferably within the last two years, in physical mechanical metallurgy, materials science and engineering, or a closely related field. Candidates should be result-oriented, highly motivated, and able to conduct systematic research, including learning and adopting new techniques as needed. Experience with microstructural and physico-mechanical characterization techniques (e.g., SEM, TEM, XRD, EDS, EBSD, FIB/SEM, tensile, compression, DSC/TGA), alloy design strategies, and high-throughput screening algorithms is meritorious. The ability to supervise students, publish in reputable journals, and maintain good research practices is required. Hands-on experience in combustion or burn-resistant testing is an advantage. Proficiency in English is expected.

How to apply

Apply online via the Varbi system using the provided link. Submit a cover letter, CV, certified certificates and diplomas, two references, five selected publications, and your doctoral thesis. Applications must be received by February 28, 2026.

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