• română
    • English
    • français
    • Deutsch
    • español
    • italiano
  • română 
    • română
    • English
    • français
    • Deutsch
    • español
    • italiano
  • Logare
Vezi articolul 
  •   Pagina principală
  • Scientific papers - Annals of "Dunarea de Jos" University of Galati - Analele științifice ale Universității "Dunărea de Jos" din Galați
  • Fascicula XIV
  • 1995-2015
  • 2015 fascicula14 nr2
  • Vezi articolul
  •   Pagina principală
  • Scientific papers - Annals of "Dunarea de Jos" University of Galati - Analele științifice ale Universității "Dunărea de Jos" din Galați
  • Fascicula XIV
  • 1995-2015
  • 2015 fascicula14 nr2
  • Vezi articolul
JavaScript is disabled for your browser. Some features of this site may not work without it.

Nonlinear Approaches Regarding Mechanical and Thermal Behaviour of Visco-Elastic Vibration on Isolators

Thumbnail
View/Open
ugal_f14_2013_nr2_Nastac.pdf (450.7Kb)
Dată
2013-10-01
Autor
Năstac, Silviu
Metadata
Arată înregistrarea completă a articolului
Abstract
Thermal effects inside the vibration elastomeric isolators have usually been neglected and this aspect can leads to certain differences between simulations and experiments. Continuous damping during the working cycle leads to an internal transfer of energy from mechanical movement to virtually infinitesimal punctual heating sources distributed into the entire isolator volume. This continuous tuning between the dynamics and the damping component can lead both to a stable and to an unstable behaviour in respect with the ratio between the external excitation frequency and the system natural frequency. These phenomena can be dignified through an additional terms added to the governing equations of the vibration isolation system. This paper deals with passive vibration isolation area and presents a set of nonlinear approaches regarding the mechanical and thermal phenomenon inside the elastomeric isolators during the exploitation time. The main idea consists in the continuous functional correlations between thermal and mechanical phenomena, and their influences upon the global dynamic characteristics of vibration isolators. Parametrical expressions were assumed from real experiments, directly or by means of computational techniques. Both lumped parameters model and finite element method simulations were performed in order to validate practical models.
URI
http://10.11.10.50/xmlui/handle/123456789/4450
Colecții
  • 2015 fascicula14 nr2 [18]

DSpace 6.0 | Copyright © Arthra Institutional Repository
Contactați-ne | Trimite feedback
Theme by 
Atmire NV
 

 

Răsfoiește

În tot DSpaceComunități; ColecțiiDupă data publicăriiAutoriTitluriSubiecteAceastă colecțieDupă data publicăriiAutoriTitluriSubiecte

Contul meu

Conectare

DSpace 6.0 | Copyright © Arthra Institutional Repository
Contactați-ne | Trimite feedback
Theme by 
Atmire NV