
Thesis work is an excellent way to get closer to TRATON AB and build relationships for the future. Many of today's employees began their TRATON AB career with their degree project. This thesis offers the opportunity to contribute to the sustainable mobility by investigating how lubricants age during operation and how their changing properties can influence system performance. Through a combination of laboratory experimentation and data analysis, you will help improve our understanding of lubricant condition monitoring and support more sustainable maintenance strategies.
TRATON AB is undergoing a major transformation, evolving from a supplier of trucks, buses to a provider of complete and sustainable transportation solutions. As a part of this shift, we are exploring new technologies and materials that support long-term environmental goals
Lubricants play a critical role in ensuring the reliability and efficiency of engines, drivelines, electric vehicles (EVs) and other vehicle systems. During service, lubricants are exposed to thermal, chemical and mechanical stress that gradually alter their properties. These changes may influence important performance characteristic, including oxidation stability, additive effectiveness, and air release behaviour. One phenomenon that remains insufficiently understood is the development of foam in lubricants. As the transportation industry moves towards more sustainable solutions, there is a growing need to maximize lubricant lifetime without compromising equipment durability. Improved understanding of lubricant ageing mechanisms may support condition-based maintenance strategies, reduce unnecessary oil changes and contribute to lower environmental impact. This thesis project offers the opportunity to investigate how lubricant ageing influences foaming behaviour and explore whether foam-related properties can provide additional insight into lubricant condition throughout its service life.
The objective of this thesis is to improve the understanding of the relationship between lubricant ageing and foam behaviour in different lubricant types. The work will involve designing and conducting laboratory experiments to evaluate how controlled ageing affect lubricant properties. You will work closely with experts from TRATON’s engine development, design, and materials technology teams to:
This thesis combines practical experimentation with theoretical analysis and interpretation of results. The project will focus on understanding how lubricants properties evolve during ageing and how these changes influence foaming behaviour.
You will:
We are looking for a motivated student who enjoys hands-on experimental work, is eager to explore new technologies, and thrives in collaborative environments. The ideal candidate should be comfortable working independently while collaborating with experts from different technical areas.
Education: M.Sc. student in Chemical Engineering, Material Science, or Engineering Physics.
Number of students: 1
Time: 20 weeks, full-time (40 hours/week)
Start: January 2027
Credits: 30hp
Mayte Pach, Ph.D., Senior Engineer, Materials Technology for Propulsion System Chemistry, TRATON AB + 46 8 553 862 49, Mayte.Pach@se.traton.com
Rocio Farias, MSc., Development engineer, Materials Technology for Propulsion System Chemistry, TRATON AB, +46 8 553 744 11, Rocio.Farias@se.traton.com
Ragna Elger, Ph.D., Group Manager, Materials Technology for Propulsion System Chemistry, TRATON AB +46 8 553 854 12, Ragna.Elger@se.traton.com
Your application must include a CV, personal letter and transcript of grades.
A background check might be conducted for this position. We are conducting interviews continuously and may close the recruitment earlier than the date specified
Publication date from -to:
2026-10-01 to 2026-11-23

Scania is a world-leading provider of transport solutions committed to a better tomorrow. Our purpose is to drive the shift towards a sustainable transport system. In doing so, we are creating a world of mobility that’s better for business, society and our environment.
Employing more than 50,000 people in about 100 countries, Scania’s research and development is concentrated in Sweden, while production takes place in Europe and South America.