Dr.-Ing. Sebastian Rybczynski

Dr.-Ing. Sebastian Rybczynski
Adresse
Technische Universität Hamburg
Baustoffe, Bauphysik und Bauchemie
Eißendorfer Straße 42 (M)
21073 Hamburg
Büro
Gebäude M
Raum 1516
Telefon
Tel: +49 40 30601 4051
E-Mail
sebastian.rybczynski(at)tuhh.de
Sprechzeiten
Nach Vereinbarung

Lehre

Informieren Sie sich bitte unter TUNE über Zeiten und Räume von Lehrveranstaltungen. Informationen und Dokumente zu Lehrveranstaltungen bzw. Modulen stellen wir unter StudIP zur Verfügung.

  • Grundlagen der Baukonstruktion (Wintersemester)
  • Umweltgerechte Baustoffe und Hochbauten (Sommersemester)

Veröffentlichungen

  • Rybczyński, S., van der Horst, T., Lohmann, J., Schmidt-Döhl, F., Ritter, M.: Effect of Coarse Aggregate Type on the Mechanical Response of Ultra-High Performance Concrete. In: Zingoni, A. (Ed.), Advances in Structural Engineering: Mechanics and Design. Proceedings of the International Symposium on Advances in Structural Engineering (ISASE 2026), Cape Town, South Africa, 7–9 September 2026. doi: 10.1201/9781003797012-36
  • Rybczyński, S., Schaan, G., Vasyl Skorych, Ritter, M., Schmidt-Döhl, F. (2024). DEM-Based Analysis of Fatigue-Induced Damage Using a Cycle-Jump Technique, Proceedings for 2024 fib Symposium, S. 185-194, 11.-13.11.2024, Christchurch.
  • Rybczyński, S., Schmidt-Döhl, F., Schaan, G., Ritter, M., Dosta, M. (2022). Numerical and experimental analysis of fatigue-induced changes in ultra-high performance concrete, Proceedings of the 8th International Conference on Structural Engineering, Mechanics and Computation, S. 1320-1325, 05.-07.09.2022, Cape Town. doi:10.1201/9781003348443-215.
  • Rybczyński, S., Schaan, G., Dosta, M., Ritter, M. und Schmidt-Döhl, F. (2021). Discrete Element Modeling und Electron Microscopy Investigation of Fatigue-Induced Microstructural Changes in Ultra-High-Performance Concrete. Materials, 14(21), S.6337. doi:10.3390/ma14216337.
  • Rybczyński, S., Dosta, M., Schaan, G., Ritter, M., Schmidt‐Döhl, F. (2020). Numerical study on the mechanical behavior of ultrahigh performance concrete using a three‐phase discrete element model. Structural Concrete, 23(1), S.548–563. doi:10.1002/suco.202000435.
  • Rybczyński, S., Dosta, M., Schaan, G., Ritter, M., Schmidt-Döhl, F. (2019a). DEM Simulation and electron microscopy analysis of the fatigue behavior of ultra-high performance concrete. Seventh Int. Conf. on Structural Engineering, Mechanics and Computation, S. 1427-1432, 02.‑04.9.2019, Cape Town. doi:10.1201/9780429426506-246.
  • Rybczyński, S., Schaan, G., Dosta, M., Ritter, M., Schmidt-Döhl, F. (2019b). Experimental and numerical investigations of the fatigue behaviour of ultra-high performance concrete, Proceedings of the fib Symposium 2019: Concrete - Innovations in Materials, Design and Structures, S. 105-112, 27.-29.5.2019, Krakow.