Kontakt:
- email:
- tomasz.wiczenbach@pg.edu.pl
Zajmowane stanowiska:
Asystent
- miejsce pracy:
- Katedra Wytrzymałości Materiałów
Gmach Główny, 160

Publikacje:
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Publikacja
Purpose This study aimed to investigate the geometrical and mechanical properties of human thoracic spine ligaments subjected to uniaxial quasi-static tensile test. Methods Four human thoracic spines, obtained through a body donation program, were utilized for the study. The anterior longitudinal ligament (ALL), posterior longitudinal ligament (PLL), capsular ligament (CL), ligamenta flava (LF), and the interspinous ligament and...
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Publikacja
- T. Wiczenbach
- Ł. Pachocki
- K. Daszkiewicz
- P. Łuczkiewicz
- W. Witkowski
- PeerJ - Rok 2023
The functional biomechanics of the lumbar spine have been better understood by finite element method (FEM) simulations. However, there are still areas where the behavior of soft tissues can be better modeled or described in a different way. The purpose of this research is to develop and validate a lumbar spine section intended for biomechanical research. A FE model of the 50th percentile adult male (AM) Total Human Model for Safety...
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Publikacja
- M. E. Golmakani
- T. Wiczenbach
- M. Malikan
- E. Z. Karimi
- M. Masoumi
- V. Eremeev
- MECHANICS OF COMPOSITE MATERIALS - Rok 2023
The fiber-metal composites made of aluminum sheets and glass fibers reinforced with a polyester resin as the matrix were studied. The composites were prepared by hand lay-up method. Some aspects of manufacturing affecting the composite behavior were considered. In particular, the influences of the arrangement of layers and their number on the mechanical and physical properties of composites with ten different compositions were...
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Publikacja
- Rok 2022
Functionally graded structures have shown the perspective of materials in a higher efficient and consistent manner. This study reports a short investigation by concentrating on the flexomagnetic response of a functionally graded piezomagnetic nano-actuator, keeping in mind that the converse magnetic effect is only taken into evaluation. The rule of mixture assuming exponential composition of properties along with the thickness...
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Publikacja
- S. Dastjerdi
- M. Malikan
- B. Akgöz
- Ö. Civalek
- T. Wiczenbach
- V. Eremeev
- INTERNATIONAL JOURNAL OF ENGINEERING SCIENCE - Rok 2022
The SARS-CoV-2 virus, which has emerged as a Covid-19 pandemic, has had the most significant impact on people's health, economy, and lifestyle around the world today. In the present study, the SARS-CoV-2 virus is mechanically simulated to obtain its deformation and natural frequencies. The virus under analysis is modeled on a viscoelastic spherical structure. The theory of shell structures in mechanics is used to derive the governing...
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Projekty:
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Projekty
Kierownik projektu: prof. dr hab. inż. Krzysztof Wilde Program finansujący: OPUS
Projekt realizowany w Katedra Wytrzymałości Materiałów zgodnie z porozumieniem UMO-2020/37/B/ST8/03231 z dnia 2021-01-11