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Effects of Vibrations on Metal Forming Process: Analytical Approach and Finite Element Simulations

Communication avec acte
Auteur
KHAN, Armaghan
ABBA, Gabriel
107452 Laboratoire de Conception Fabrication Commande [LCFC]
ccGIRAUD-AUDINE, Christophe
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]

URI
http://hdl.handle.net/10985/8736
Date
2011

Résumé

Vibration assisted forming is one of the most recent and beneficial technique used to improve forming process. Effects of vibration on metal forming processes can be attributed to two causes. First, the volume effect links lowering of yield stress with the influence of vibration on the dislocation movement. Second, the surface effect explains lowering of the effective coefficient of friction by periodic reduction contact area. This work is related to vibration assisted forming process in viscoplastic domain. Impact of change in vibration waveform has been analyzed. For this purpose, two analytical models have been developed for two different types of vibration waveforms (sinusoidal and triangular). These models were developed on the basis of Slice method that is used to find out the required forming force for the process. Final relationships show that application of triangular waveform in forming process is more beneficial as compare to sinusoidal vibrations in terms of reduced forming force. Finite Element Method (FEM) based simulations were performed using Forge2008®and these confirmed the results of analytical models. The ratio of vibration speed to upper die speed is a critical factor in the reduction of the forming force.

Fichier(s) constituant cette publication

Nom:
LCFC_AMPT_2010_ KHAN
Taille:
1.096Mo
Format:
PDF
Description:
communication AMPT 2010 Paris
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  • Laboratoire de Conception Fabrication Commande (LCFC)

Documents liés

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  • An alternative explanation of forming force reduction for forming process submitted to vibration: Influence of the waveform in the viscoplastic domain 
    Article dans une revue avec comité de lecture
    KHAN, Armaghan; ABBA, Gabriel; ABIDEEN, M.Z.; ccGIRAUD-AUDINE, Christophe (Elsevier, 2016)
    This article addresses the effects of vibrations on a viscoplastic workpiece applied during the forgingprocess. To achieve this goal, a phenomenological model based on the slice method combined with aNorton–Hoff viscoplastic ...
  • Progressive wave: a new multisource vibration technique to assist forming processes - kinematic study, simulation results and design proposition 
    Communication sans acte
    KHAN, Armaghan; NGUYEN, Thanh Hung; ABBA, Gabriel; LEMAIRE-SEMAIL, Betty; ccGIRAUD-AUDINE, Christophe (2013)
    Use of vibration in the forming process has already shown numerous advantages in the improvement of mechanical and surface properties of workpiece such as good surface or less friction between die and workpiece. The aim ...
  • Use of progressive wave: a new multisource vibration technique to assist metal forming process 
    Article dans une revue avec comité de lecture
    KHAN, Armaghan; NGUYEN, Thanh Hung; ABBA, Gabriel; LEMAIRE-SEMAIL, Betty; ccGIRAUD-AUDINE, Christophe (EDP Sciences, 2014)
    Application of vibration in metal forming process has already shown numerous advantages in the past. It improves not only mechanical and surface properties of workpiece but the integration of vibration in metal forming ...
  • Experimentally valided approach for the simulation of the forging process using mechanical vibration 
    Article dans une revue avec comité de lecture
    LY, Rith; ABBA, Gabriel; ccGIRAUD-AUDINE, Christophe (Springer Verlag, 2009)
    In this study, an experimental setup of a forging process has been designed which allows to apply vibrations to the lower die of amplitude ranging from 0 to 80 ?m at frequencies varying from 1 to 130Hz thanks to the use ...
  • Design and causal modelling of a piezoelectric multi-actuator system used in forging processes 
    Communication avec acte
    NGUYEN, Thanh Hung; AMBERG, Michel; LEMAIRE-SEMAIL, Betty; ABBA, Gabriel; ccGIRAUD-AUDINE, Christophe (IEEE, 2014)
    This paper presents the design of a mechatronic system integrating iezoelectric multi-actuators, which is used to generate low-frequency vibrations to assist the forging process. With the aim of controlling the complete ...

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