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Research on Forming Efficiency in Double-Sheet Electromagnetic Forming Process
- Source :
- IEEE Access, Vol 8, Pp 19248-19255 (2020)
- Publication Year :
- 2020
- Publisher :
- Institute of Electrical and Electronics Engineers (IEEE), 2020.
-
Abstract
- Improving the forming efficiency at a reasonable cost has been the main challenge in the electromagnetic forming technology. Towards this aim, this paper proposes a simultaneous cost-effective double-sheet electromagnetic forming method using single driving coil. In order to highlight the features of the proposed technique, comparison of the performance of five electromagnetic forming models is presented. These models include a no-sheet model, single-sheet stationary model, single-sheet moving model, double-sheet stationary model and double-sheet moving model. For each model, electromagnetic force distribution and forming efficiency of the workpiece are analyzed. Furthermore, the influence of the pulse current width of the driving coil on the electromagnetic forming efficiency of the plate is investigated for all models. Results show that for the same system discharge parameters, electromagnetic forming efficiency of double-sheet is 21.14% whereas the single-sheet electromagnetic forming model only achieves 14.68% efficiency. Thus, the double-sheet electromagnetic forming technology can improve the low forming efficiency of a single-sheet electromagnetic forming method and at the same time, the method can form two workpieces simultaneously which makes it more cost effective than the single-sheet method.
- Subjects :
- electromagnetic forming technology
0209 industrial biotechnology
Materials science
General Computer Science
General Engineering
Process (computing)
Mechanical engineering
02 engineering and technology
Electromagnetic force
Electromagnetic forming
020901 industrial engineering & automation
Electromagnetic coil
forming efficiency
General Materials Science
lcsh:Electrical engineering. Electronics. Nuclear engineering
Pulse current
double-sheet model
lcsh:TK1-9971
Stationary model
Subjects
Details
- ISSN :
- 21693536
- Volume :
- 8
- Database :
- OpenAIRE
- Journal :
- IEEE Access
- Accession number :
- edsair.doi.dedup.....7a08b4d06f7821ee800324eae492cb6e