NUMERICAL INVESTIGATIONS ON PARTICULAR APPLICATION OF ELECTROMAGNETIC FORMING

  • Sorin Pasca University of Oradea, Faculty of Electrical Engineering and Information Technology
  • Alexandra Pasca Technical University of Cluj-Napoca, Faculty of Electrical Engineering
Keywords: electromagnetic forming, electromagnetic compaction, numerical modeling, pulsed magnetic compaction

Abstract

The paper deals with numerical investigations on some special application derived from electromagnetic forming, such as pulse magnetic compaction of powder materials. Based on finite element models, it is computed the characteristic parameters and quantities of the process, in order to identifying the possibilities to improve the efficiency. It is evaluated the influence of the thickness of thin copper driver and of the stored energy in the capacitor bank.

References

1. S.D. Kore, P.P. Date, S.V. Kulkarni, Electromagnetic impact welding of aluminum to stainless steel sheets, J. of Materials Processing Technology, Vol. 208, pp. 486 - 493, (2008).
2. V Mironovs, A Korjakins, A Tatarinov, E Barone and V Glushchenkov, Combined static-dynamic compaction of metal powder and ceramic materials, IOP Conference Series: Mat. Sci. and Engg, Vol. 251, pp. 1-7, (2017).
3. V. Mironov, А. Tatarinov, М. Kolbe, V. Gluschenkov, Detachment of Conductive Coatings by Pulsed Electromagnetic Field, 7th International Conference on High Speed Forming, Dortmund, Proc., pp. 69-77, (2016).
4. Chelluri, B., Knoth, E., Powder Forming Using Dynamic Magnetic Compaction, Int. Conf. on High Speed Forming, Proc., pp. 26-34, (2010)
5. Shiwei Yan, Shangyu Huang, Wei Liu, Jianhua Hu, Yu Lei, Mengcheng Zhou, Exp. and num. investigation of temperature evolution during electromagnetic pulsed compaction of powders, Powder Technology, Vol. 306, pp. 1-9, (2017).
6. S.J. Hong, G.H. Lee, C.K. Rhee, W.W. Kim, K.S. Lee, Magnetic pulsed compaction of ferromagnetic nano-powders for soft-magnetic core, Materials Science and Engineering, Vol. 449–451, March 2007, pp. 401-406, (2007).
7. S. Pasca, T. Vesselenyi, V. Fireteanu, T. Tudorache, M. Tomse, P. Mudura, E. Vladu, S. Muresan, Sequentially Coupled FE Model of Transient Magneto-Structural Phenomena in Electromagnetic Forming Processes, Int. Symp. ATEE, Bucharest, pp. 197-202, (2008).
8. S. Pasca, T. Tudorache, M. Tomse, Finite Element Analysis of Coupled Magneto-Structural and Magneto-Thermal Phenomena in Magnetoforming Processes, Int. Conf. Electromagn. Processing of Materials, EPM Dresda, Proc. pp. 735-738 (2009).
9. S. Pasca, V. Fireteanu, Finite Element Analysis of Successive Induction Heating and Magnetoforming of Thin Magnetic Steel Sheets, 14th Int. Symp. on Num. Field Calc. in Electrical Engg. IGTE, Graz, Austria, Proc. CD, (2010).
10. S. Pasca, A. Pasca, Numerical Modeling of High-Speed Free Bulging of Thin-Wall Aluminum Tubes under the Action of Impulse Electromagnetic Forces, JEEE, Vol. 8, No. 1, pp. 27-30, (2015)
Published
2017-12-29
How to Cite
Pasca, S., & Pasca, A. (2017). NUMERICAL INVESTIGATIONS ON PARTICULAR APPLICATION OF ELECTROMAGNETIC FORMING. Nonconventional Technologies Review, 21(4). Retrieved from http://revtn.ro/index.php/revtn/article/view/207