DocumentCode
1765505
Title
Modeling of Forging Processes Assisted by Piezoelectric Actuators: Principles and Experimental Validation
Author
Thanh Hung Nguyen ; Giraud-Audine, C. ; Lemaire-Semail, B. ; Abba, G. ; Bigot, R.
Author_Institution
Lab. d´Electrotech. et d´Electron. de Puissance de Lille (L2EP), Arts et Metiers Paristech centre de Lille, Lille, France
Volume
50
Issue
1
fYear
2014
fDate
Jan.-Feb. 2014
Firstpage
244
Lastpage
252
Abstract
This paper presents the modeling of forging processes assisted by vibrations. A piezoelectric actuator is used to generate specific low-frequency vibration waveforms superimposed to the forging motion. Experimental results show a reduction of the forging load during upsetting tests. However, the appropriate waveforms and their influence on the forging load are still poorly understood. Moreover, the requirements of actuators and the design of the control should be known in advance. Therefore, there is a need for simulation to predict those issues. Due to the complexity of the interactions between the different components of the system, a complete model of the process is proposed. It is developed using an energetic macroscopic representation to preserve causality throughout the modeling. Simulation results are then compared with representative experimental results.
Keywords
forging; piezoelectric actuators; vibrations; causality throughout; control design; energetic macroscopic model; forging load; forging motion; forging process; low frequency vibration waveforms; modeling process; piezoelectric actuator; upsetting test; Force; Load modeling; Plastics; Strain; Stress; Vibrations; Energetic macroscopic representation (EMR); forging; graphical models; modeling; piezoelectric actuator (PA);
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/TIA.2013.2267791
Filename
6530696
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