PAPER SENDING

  • googleplus
  • facebook
  • twitter
  • linkedin
  • linkedin

REVISTA DYNA NEW TECHNOLOGIES REVISTA DYNA NEW TECHNOLOGIES

  • Skip to the menu
  • Skip to the content
  • DYNA Publishing
    • DYNA
    • DYNA Energy and Sustainability
    • DYNA Management
    • DYNA New Technologies
  • Journal
    • The Journal and its bodies
      • The Journal
      • Editorial Board
      • Advisory-Scientific Board
    • Diffusion & indexation database
    • Mission, Vision & Values
    • Collaborating with DYNA
  • Authors & Referees
    • Guidelines, rules and forms
    • Collaborating with Journal
  • Papers
    • Search Content
    • Volumes / Issues
    • Most downloaded
    • Sending papers
  • Forum
  • News
    • News New Technologies
    • Newsletter DNT
  • Advertising
    • Advertising at DYNA
    • Advertising rates
  • Contact
    • Contacting
  • Search
    • In this Journal
    • Search in DYNA journals
  • Submit
  • Sign in
    • Privacy Policy

Return to the menu

  • Homepage
  • Papers
  • Search Content

Search Content

×

 |    : /

Vote:

Results: 

0 points

 0  Votes

IMPACT ENERGY DISSIPATOR WITH VARIABLE STIFFNESS AND DRY FRICTION LAYERS

 |    : /

JANUARY-DECEMBER 2022   -  Volume: 9 -  Pages: [13P.]

DOI:

https://doi.org/10.6036/NT10359

Authors:

MIGUEL ALBERTO DOMÍNGUEZ GURRÍA
-
DARIUSZ SZWEDOWICZ WASIK
-
ELADIO MARTINEZ RAYON
-
QUIRINO ESTRADA BARBOSA

Disciplines:

  • Mechanics (FRICCION )

Downloads:   56

How to cite this paper:  
Download pdf

Download pdf

Received Date :   25 October 2021

Reviewing Date :   27 October 2021

Accepted Date :   12 January 2022


Key words:
fricción seca, rigidez variable, disipador de energía, láminas, método de elemento finito, dry friction, variable stiffness, damper energy, layers, FEM
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

This paper presents an experimental and numerical study that allows to evaluate the dissipation of impact energy, proposing a friction damper with the use of layers (LFD) for impact energy dissipation. The study is carried out on a macro scale of contact between the layers and friction elements. The effects of displacement and applied speed are experimentally analyzed. Numerically, the FEM analyses the effects of the preload and the material of the friction layers on the hysteretic behavior of the LFD. The energy dissipation in a cycle increases with respect to the applied displacement. The operating range of the LFD is variable, because the stiffness of the system increases with respect to the applied displacement. The preload applied to the damper varies with respect to the displacement applied. A theoretical approach is established to estimate the energy dissipation of the system with previously defined parameters or, to define the geometry and material of the damper elements for an estimated energy range.

Key Words: dry friction, variable stiffness, damper energy, layers, FEM,

Share:  

  • Twittear
  • facebook
  • google+
  • linkedin
  • delicious
  • yahoo
  • myspace
  • meneame
  

Search Content

banner crosscheck

  •  
  • Twitter
  • Twitter
  •  
  • Facebook
  • Facebook
  •  
Tweets por el @revistadyna.
Loading…

Anunciarse en DYNA 

© DYNA New Technologies Journal

EDITORIAL: Publicaciones DYNA SL

Adress: Alameda Mazarredo 69 - 2º, 48009-Bilbao SPAIN

Email: info@dyna-newtech.com - Web: http://www.dyna-newtech.com

 

  • Menu
  • DYNA Publishing
    • DYNA Publishing
    • DYNA
    • DYNA Energy and Sustainability
    • DYNA Management
    • DYNA New Technologies
  • Journal
    • Journal
    • The Journal and its bodies
      • The Journal and its bodies
      • The Journal
      • Editorial Board
      • Advisory-Scientific Board
    • Diffusion & indexation database
    • Mission, Vision & Values
    • Collaborating with DYNA
  • Authors & Referees
    • Authors & Referees
    • Guidelines, rules and forms
    • Collaborating with Journal
  • Papers
    • Papers
    • Search Content
    • Volumes / Issues
    • Most downloaded
    • Sending papers
  • Forum
  • News
    • News
    • News New Technologies
    • Newsletter DNT
  • Advertising
    • Advertising
    • Advertising at DYNA
    • Advertising rates
  • Contact
    • Contact
    • Contacting
  • Search
    • In this Journal
    • Search in DYNA journals
  • Submit
  • Sign in
    • Sign in
    • Privacy Policy

Regístrese en un paso con su email y podrá personalizar sus preferencias mediante su perfil


: *   

: *   

:

: *     

 

  

Loading Loading ...