Focus Area Project: Project C 01
Project C 01
Scan-based Fatigue Prediction of DED-Arc Additively Manufactured Steel Components
2026 | M. Horstjan, M. Müggenburg, M. Christmann, S. Vogts, S. Kollmannsberger, K. Thiele, J. Unglaub: Scan-based Fatigue Prediction of DED-Arc Additively Manufactured Steel Components Additive Manufacturing, 2026, https://doi.org/10.1016/j.addma.2026.105243 Data…
M. Sc. Matti Christmann
is a doctoral researcher at the Chair of Data Science in Civil Engineering at Bauhaus-University Weimar. He conducts research on geometric modelling and simulation of additively manufactured (AM) parts, focusing on developing efficient and effective mechanical simulation workflows for evaluating the performance of as-built AM components. His work aims to advance the field of AM by enhancing the reliability of production processes.A Plastic Damage Model With Mixed Isotropic–Kinematic Hardening for Low-Cycle Fatigue in 7020 Aluminum
2025 | A. Daneshyar, D. Siebert, C. Radlbeck, S. Kollmannsberger: A Plastic Damage Model With Mixed Isotropic–Kinematic Hardening for Low-Cycle Fatigue in 7020 Aluminum Fatigue & Fracture of Engineering Materials &…
Prof. Dr.-Ing. habil. Stefan Kollmannsberger
is Professor at Bauhaus-University Weimar and is Head of the Chair of Data Science in Civil Engineering. He was head of the work group ‘Simulation in Applied Mechanics’ at the Chair of Computational Modeling and Simulation and has a fifteen year-long scientific record in that field. In this project, he is responsible for the development of simulation methods for metal based artefacts.Predicting fatigue life of additively manufactured lattice structures using the image-based Finite Cell Method and average strain energy density
2024 | R. De Biasi, O. Oztoprak, F. Zanini, S. Carmignato, S. Kollmannsberger, M. Benedetti: Predicting fatigue life of additively manufactured lattice structures using the image-based Finite Cell Method and…






