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Palabras claves o descriptores: NONLINEAR ENERGY SINKS (Comienzo)
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Publicación seriada
Referencias AnalíticasReferencias Analíticas
Autor: Kerschen, Gaetan ; Lee, Young Sup ; Vakakis, Alexander F. ; McFarland, D. Michael ; Bergman, Lawrence A.
Título: Irreversible Passive Energy Transfer in Coupled Oscillators with Essential Nonlinearity
Páginas/Colación: 648-679 p.
Url: Ir a http://siamdl.aip.org/getabs/servlet/GetabsServlet?prog=normal&id=SMJMAP000066000002000648000001&idtype=cvips&gifs=Yeshttp://siamdl.aip.org/getabs/servlet/GetabsServlet?prog=normal&id=SMJMAP000066000002000648000001&idtype=cvips&gifs=Yes
SIAM Journal on Applied Mathematics Vol. 66, no. 2 Nov. 2005/Jan. 2006
Información de existenciaInformación de existencia

Palabras Claves: Palabras: ENERGY PUMPING ENERGY PUMPING, Palabras: ESSENTIAL NONLINEARITY ESSENTIAL NONLINEARITY, Palabras: NONLINEAR ENERGY SINKS NONLINEAR ENERGY SINKS, Palabras: PASSIVE ENERGY TRANSFER PASSIVE ENERGY TRANSFER, Palabras: RESONANCE CAPTURE RESONANCE CAPTURE

Resumen
RESUMEN

RESUMEN

 

We study numerically and analytically the dynamics of passive energy transfer from a damped linear oscillator to an essentially nonlinear end attachment. This transfer is caused by either fundamental or subharmonic resonance capture, and in some cases is initiated by nonlinear beat phenomena. It is shown that, due to the essential nonlinearity, the end attachment is capable of passively absorbing broadband energy at both high and low frequencies, acting, in essence, as a passive broadband boundary controller. Complicated transitions in the damped dynamics can be interpreted based on the topological structure and bifurcations of the periodic solutions of the underlying undamped system. Moreover, complex resonance capture cascades are numerically encountered when we increase the number of degrees of freedom of the system. The ungrounded essentially nonlinear end attachment discussed in this work can find application in numerous practical settings, including vibration and shock isolation of structures, seismic isolation, flutter suppression, and packaging.

 

 

 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 

UCLA - Biblioteca de Ciencias y Tecnologia Felix Morales Bueno

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