During contact and relative motion of technical surfaces, energy is dissipated through mechanisms such as plastic deformation, particle generation, surface oxidation, film shearing and heat. From an engineering perspective, it is important to understand whether and under which conditions (materials, surface finish, operating conditions, etc.) the resulting running-in state is stable. The relative contribution of these processes determines the evolving surface topography and health of a tribological contact.
Start: according to prior agreement
Requirement for this thesis is the enrollment at university. Please attach your CV, transcript of records, examination regulations and if indicated a valid work and residence permit.
Diversity and inclusion are not just trends for us but are firmly anchored in our corporate culture. Therefore, we welcome all applications, regardless of gender, age, disability, religion, ethnic origin or sexual identity.
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Arshia Fatemi (Functional Department)
Michael Mayer (Functional Department)
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