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The Extreme Materials and Mechanics Group at TU Delft invites applications for a doctoral candidate to investigate hydrogen-induced degradation in circular steels within the CIRHY program.
You will combine advanced microstructural characterization, in-situ hydrogen testing and fracture toughness experiments to reveal how hydrogen interacts with steel microstructures and to establish links between microstructure and performance.
Join a cutting-edge research programme at TU Delft and investigate the mechanisms of hydrogen‑induced degradation in circular steels.
Within this project, you will investigate one of the key challenges facing the hydrogen economy: understanding how hydrogen interacts with the complex microstructures of circular steels and causes degradation and failure. This position is part of the project "Circularity as Opportunity: Engineering Hydrogen-Resistant Circular Steels (CIRHY)", a 6‑year research and innovation programme developing next‑generation circular steels that can safely operate in hydrogen environments. By combining advanced experiments with multiscale modelling, CIRHY aims to enable reliable and sustainable steels for future hydrogen infrastructure and industry.
Hydrogen embrittlement is one of the major barriers to the safe deployment of hydrogen technologies. At the same time, increasing steel circularity introduces microstructural complexity through tramp elements, precipitates, inclusions and segregation phenomena. While considerable progress has been made in understanding hydrogen embrittlement in conventional steels, the mechanisms governing hydrogen‑induced degradation and fracture in compositionally complex circular steels remain poorly understood.
The Extreme Materials and Mechanics Group at TU Delft, led by Prof. Vera Popovich, is internationally recognized for its expertise in hydrogen embrittlement, fracture mechanics and advanced characterization of metallic materials. By combining state‑of‑the‑art microscopy, hydrogen testing and fracture mechanics, the group develops fundamental understanding of material degradation in extreme environments and translates this knowledge into solutions for the energy transition.
Within this position, you will combine advanced microstructural characterization, in‑situ hydrogen mechanical testing and fracture toughness experiments to uncover how hydrogen interacts with circular steel microstructures and affects deformation, ductility, crack initiation and crack propagation. You will investigate hydrogen trapping and transport, identify the microstructural features controlling embrittlement and establish quantitative links between microstructure and structural performance. The outcome of this research, conducted in close collaboration with Tata Steel and other partners, will provide crucial experimental insights for designing safer and more reliable hydrogen‑resistant circular steels.
Collaborate closely with researchers from the Department of Materials Science and Engineering at TU Delft, University of Groningen, Eindhoven University of Technology, University of Twente, KU Leuven, MPI for Sustainable Materials and multiple industrial partners.
Contribute to scientific publications, conference presentations and dissemination activities within the M2i framework.
We are looking for a highly motivated and curious researcher with a strong interest in materials degradation, hydrogen embrittlement and advanced experimental characterization. You enjoy working at the intersection of materials science, mechanics and microscopy, and are excited to contribute to the development of sustainable materials for the hydrogen economy.
You are an independent thinker, eager to learn new experimental techniques, and enjoy collaborating with researchers from different disciplines as well as industrial partners.
Furthermore, you meet the following requirements:
Working at TU Delft means contributing to solutions that really make a difference. For over 180 years, we have been training engineers who make an impact worldwide in companies, government bodies, or as entrepreneurs. Our alumni turn knowledge into concrete solutions for the challenges of today and tomorrow. These challenges are changing rapidly. That is why we focus on themes such as energy, climate, digitalisation, artificial intelligence (AI), and smart mobility every day. Our education and research are directly aligned with what society needs now and in the future.
At TU Delft, our people make the difference. With their knowledge and curiosity, our staff provide a high‑quality education and conduct pioneering research that extends beyond the campus. You will have the opportunity to take the initiative, work with others, and grow as a professional. Working at TU Delft means join an international community of professionals and students. Together, we create knowledge, innovations, and solutions that help move the world forward.
From chip to ship. From machine to human being. From idea to solution. Driven by a deep‑rooted desire to understand our environment and discover its underlying mechanisms, research and education at the ME faculty focusses on fundamental understanding, design, production including application and product improvement, materials, processes and (mechanical) systems.
ME is a dynamic and innovative faculty with high‑tech lab facilities and international reach. It’s a large faculty but also versatile, so we can often make unique connections by combining different disciplines. This is reflected in ME’s outstanding, state‑of‑the‑art education, which trains students to become responsible and socially engaged engineers and scientists. We translate our knowledge and insights into solutions to societal issues, contributing to a sustainable society and to the development of prosperity and well‑being. That is what unites us in pioneering research, inspiring education and (inter)national cooperation.
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Doctoral candidates will be offered a 4‑year period of employment in principle, but in the form of 2 employment contracts. An initial 1.5 year contract with an official go/no go progress assessment within 15 months. Followed by an additional contract for the remaining 2.5years assuming everything goes well and performance requirements are met.
Will you need to relocate to the Netherlands for this job? TU Delft is committed to make your move as smooth as possible! The HR unit, Coming to Delft Service, offers information on their website to help you prepare your relocation. In addition, Coming to Delft Service organises events to help you settle in the Netherlands, and expand your (social) network in Delft.