Search

Katedra Mechaniki, Inżynierii Materiałowej i Biomedycznej
Katedra Mechaniki, Inżynierii Materiałowej i Biomedycznej
  • News
  • About us
  • Contact
  • Light Dark Automatic
  • English
    English
    Polski
Szymon Dziuba

Szymon Dziuba

  • ☎️ +48 71 320 xxxx
  • 🏙️ 50-372 Wrocław, ul. Mariana Smoluchowskiego 25 (budynek B1)
  • 🚪

Latest

  • Analysis of selected advance damage models for fatigue accumulation in S690 and S960
  • Bainitic rails intended for highly-loaded tracks – the nature of fatigue cracking mechanisms in mixed mode loading conditions
  • Comparative study of FCGR in additively manufactured materials – IN625 and IN718
  • Comparison of fatigue crack propagation rates in high strength steel S460, S690 and S960 under stress ratio R = 0.1
  • Effect of pre-strain on fatigue crack growth rate for P355NL1 steel
  • Fatigue crack growth characterization of Inconel 718 after additive manufacturing by laser powder bed fusion and heat treatment
  • Fatigue crack propagation in structural steel S460 and S690 under stress ratio R = 0.1
  • Fatigue fracture characterization of AlSi7Mg0.6
  • Influence of CFRP patches on fatigue crack growth rate in old bridge steel
  • Wpływ medium retardacyjnego na przebieg procesu propagacji pękania metalowych elementów wytwarzanych metodami przyrostowymi
  • Analysis of the deceleration methods of fatigue crack growth rates under mode I loading type in pearlitic rail steel
  • Fatigue crack growth characterization of additively manufactured IN625 and IN718 alloys

Privacy Policy of Wrocław University of Science and Technology

© 2025 Department of Mechanics, Materials and Biomedical Engineering. This work is licensed under CC BY NC ND 4.0

Published with Hugo Blox Builder — the free, open source website builder that empowers creators.

Cite
Copy Download