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Postdoc Surface Quality After Reheating in Green Steel Production

TU Delft
36 - 40 uur
PhD

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Manager - IT/OT Automation

Qabird Leiden
65.000 tot 85.000
32 - 40 uur

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PhD Position Design and Control of Mixed Fixed-Flexible Transport Networks

TU Delft
3.059 tot 3.881
38 - 40 uur

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DHL Utrecht
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Postdoc Research Corrosion of Light-alloys for Research Reactor Applications

TU Delft
3.546 tot 5.538
38 - 40 uur
PhD

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PhD Position Holistic Ship Design

TU Delft
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Groups, Meetings & Events Manager

Hotelprofessionals - Renaissance Amsterdam Hotel Amsterdam
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PhD Position on Unlocking Flexibility in Electricity Markets via Model-Predictive Control

TU Delft
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Experimental PhD Position Understanding Corrosion Risks of Sustainable Aviation Fuel

TU Delft Delft
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PhD Position Metallurgical Model of Scrap Metal Streams

TU Delft
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VolkerRail Nederland B.V. Vianen
450 tot 650
16 - 32 uur
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PhD Position Behavioral Models Towards the Design of Mixed Fixed-Flexible Transport Networks

TU Delft
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Postdoc in Tactile Robotics for Dexterous Manipulation

TU Delft Delft
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36 - 40 uur
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Director of Product Fintech (Traveler Payments)

Booking Holdings, Inc. Amsterdam
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Postdoc Surface Quality After Reheating in Green Steel Production
TU Delft
36 - 40 uur
PhD
Status Open
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Wat wij vragen

Opleiding
Hold an MSc-degree or PhD-degree in the field of materials science or related disciplines, with a solid background in metal /steel science.
Ervaring
Eine kritische, neugierige und kreative Herangehensweise an die Forschung, mit exzellenten Problemlösungsfähigkeiten. Hervorragende Kommunikationsfähigkeiten und die Fähigkeit, in einem bereichsübergreifenden Team mit Industriepartnern, Wissenschaftlern und Technikern zu arbeiten. Bereitschaft zur Teilnahme an Bildungsaktivitäten wie Praxis- oder Gastvorlesungen.
Talen
  • Je beheerst Engels

Wat wij bieden

Uren
36 tot 40 uur per week
Dienstverband
fulltime
Type vacature
intern

Vacaturebeschrijving

Postdoc Surface Quality After Reheating in Green Steel Production

This research contributes to green steelmaking by investigating the effect of tramp elements on the surface quality of steels after reheating.

Job description

Steel production is estimated to account for approximately 7% of global CO₂ emissions. Achieving sustainable steel production requires a combination of green hydrogen usage, full recycling of scrap steel, and the electrification of processes. The adoption of new sustainable process technologies will necessitate changes in heat treatment methods, particularly in heating systems. These changes will primarily affect furnace atmospheres, which in turn influence surface reactions during steel processing.

Additionally, the increased use of recycled steel introduces trace elements-known as tramp elements- alters steel composition. This has important implications for surface quality, surface-dependent mechanical properties, and product manufacturability.

This project aims at understanding the oxidation processes occurring in reheating furnaces, where the as-cast steel is heat-treated to optimise its mechanical properties for entering the rolling mills.

The transition from fossil-based to green furnace atmospheres will lead to an increase in water and CO2 content in the furnace thereby affecting the kinetics of growth and morphology of the oxide layer. In green steelmaking it is also aimed at reusing of steel from scrap. The introduce tramp elements is expecting to influence growth kinetics, type and morphology of the formed oxides. Important features of the oxide layer for further steps in steelmaking are the porosity, the layer thickness (loss of iron) and the adhesion of the oxide to the substrate, a key factor for the descalability.

Oxidation also causes steel surfaces to change from being reflective metals to absorbing dielectrics. The thickness and morphology of the oxide determine the emissivity, that affects both the heat transfer and the temperature profile during processing.

The research project considers first the analysis of the possible oxide phases formed and the characterisation of the external oxidation layer. The analysis includes the morphology and the specific features of oxides layers grown in wet oxidation conditions for a group of steel of interest to all partners. Next the insights gained on surface evolution due to oxidation will be incorporated into predictive emissivity models to enable precise temperature control during reheating.

And finally, the effect of tramp elements on the oxidation behaviour will be tackled.

Ultimately, the project aims to develop a predictive model for oxide growth and emissivity under sustainable reheating conditions.

We are looking for an ambitious post-doc or PhD-researcher to join the exciting and collaborative research project part of the Dutch National Growth Fund program - Growth with Green Steel (). As a PhD or post-doc researcher, you will work in a stimulating academic environment and collaborate with leading industrial partners. You will also have the opportunity to contribute to the academic community through discussions, the co-supervision of students, and guest lectures.

Job requirements

  • Hold an MSc-degree or PhD-degree in the field of materials science or related disciplines, with a solid background in metal /steel science.
  • Have strong experince in numerical or analytical physical-chemical modelling and outstanding experimental competence.
  • Have experience with microstructural and surface characterization.
  • Have a critical, curious, and creative approach to the research, with excellent problem-solving skills.
  • Have proven experience in writing scientific reports and preparing communications for scientific and technical meetings with project partners.
  • Have excellent communication skills and the ability to work in a cross-organisational team, with industry stakeholders, academics and technicians.
  • Be willing to participate in educational activities such as practical or guest lectures.

TU Delft (Delft University of Technology)

Delft University of Technology is built on strong foundations. As creators of the world-famous Dutch waterworks and pioneers in biotech, TU Delft is a top international university combining science, engineering and design. It delivers world class results in education, research and innovation to address challenges in the areas of energy, climate, mobility, health and digital society. For generations, our engineers have proven to be entrepreneurial problem-solvers, both in business and in a social context.

At TU Delft we embrace diversity as one of our core values and we actively engage to be a university where you feel at home and can flourish. We value different perspectives and qualities. We believe this makes our work more innovative, the TU Delft community more vibrant and the world more just. Together, we imagine, invent and create solutions using technology to have a positive impact on a global scale. That is why we invite you to apply. Your application will receive fair consideration.

Challenge. Change. Impact!

Faculty Mechanical Engineering

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.

to go to the website of the Faculty of Mechanical Engineering. Do you want to experience working at our faculty? These videos will introduce you to some of our researchers and their work.

Application procedure

  • Your letter of motivation.
  • Your Curriculum Vitae with publication list.
  • The transcripts of your bachelor and master studies
  • Contact information of two references.

Please note:

  • You can apply online. We will not process applications sent by email and/or post.
  • As part of knowledge security, TU Delft conducts a risk assessment during the recruitment of personnel. ...
  • Please do not contact us for unsolicited services.
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