Toward understanding the self-adaptive dynamics of a harmonically forced beam with a sliding mass

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • Malte Krack
  • Noha Aboulfotoh
  • Jens Twiefel
  • Jörg Wallaschek
  • Lawrence A. Bergman
  • Alexander F. Vakakis

Externe Organisationen

  • Universität Stuttgart
  • University of Illinois Urbana-Champaign (UIUC)
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten (von - bis)699-720
Seitenumfang22
FachzeitschriftArchive of applied mechanics
Jahrgang87
Ausgabenummer4
Frühes Online-Datum19 Dez. 2016
PublikationsstatusVeröffentlicht - Apr. 2017

ASJC Scopus Sachgebiete

Zitieren

Toward understanding the self-adaptive dynamics of a harmonically forced beam with a sliding mass. / Krack, Malte; Aboulfotoh, Noha; Twiefel, Jens et al.
in: Archive of applied mechanics, Jahrgang 87, Nr. 4, 04.2017, S. 699-720.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Krack M, Aboulfotoh N, Twiefel J, Wallaschek J, Bergman LA, Vakakis AF. Toward understanding the self-adaptive dynamics of a harmonically forced beam with a sliding mass. Archive of applied mechanics. 2017 Apr;87(4):699-720. Epub 2016 Dez 19. doi: 10.48550/arXiv.2101.04004, 10.1007/s00419-016-1218-5, 10.1007/s00419-020-01786-0
Krack, Malte ; Aboulfotoh, Noha ; Twiefel, Jens et al. / Toward understanding the self-adaptive dynamics of a harmonically forced beam with a sliding mass. in: Archive of applied mechanics. 2017 ; Jahrgang 87, Nr. 4. S. 699-720.
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AU - Krack, Malte

AU - Aboulfotoh, Noha

AU - Twiefel, Jens

AU - Wallaschek, Jörg

AU - Bergman, Lawrence A.

AU - Vakakis, Alexander F.

N1 - Funding information: The work leading to this publication was funded by the Daimler and Benz Foundation, and the European Commission; see acknowledgements The first author gratefully acknowledges the Daimler and Benz Foundation for their support of the postdoctoral scholarship (Project 32-05/15). The second author gratefully acknowledges the European Commission for its support of the Marie Curie program through the ITN ANTARES project (GA 606817).

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KW - Moving mass

KW - Non-smooth dynamics

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KW - Self-arranging

KW - Self-tuning

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