NUMERICAL ESTIMATES OF ELECTRODYNAMICS PROCESSES IN THE INDUCTOR SYSTEM WITH AN ATTRACTIVE SCREEN AND A FLAT RECTANGULAR SOLENOID

Authors

  • E. A. Chaplygin Kharkov National Automobile and Highway University, Ukraine https://orcid.org/0000-0003-1448-6091
  • M. V. Barbashova Kharkov National Automobile and Highway University, Ukraine
  • A. Yu. Koval Kharkov National Automobile and Highway University, Ukraine

DOI:

https://doi.org/10.20998/2074-272X.2018.2.09

Keywords:

magnetic-pulsed treatment, inductor system, attractive screen, rectangular solenoid, electrodynamics processes

Abstract

Purpose. To carry out numerical estimates of currents and forces in the investigated inductor system with an attractive screen (ISAS) and determine the effectiveness of the force attraction. Methodology. The calculated relationships and graphical constructions were obtained using the initial data of the system: induced current in the screen and sheet metal; the distributed force of attraction (Ampère force); the repulsive force acting on the sheet metal (Lorentz force); amplitude values of the force of attraction and repulsion; phase dependence of the force of attraction, the repulsive force and the total resulting force. Results. The results of calculations in the form of graphical dependencies of electrodynamic processes in the region under the conductors of a rectangular solenoid of inductor system with an attracting screen are presented. The graphs of forces and currents in region of dent are obtained. In the paper the analysis of electrodynamics processes for whole area under the winding of inductor system with an attractive screen is shown. The flowing this processes in the region of dent a given geometry is presented. Originality. The considered inductor system with an attractive screen and a rectangular solenoid is improved, in comparison with the previous developed ISAS. It has a working area under the lines of parallel conductors in the cross section of a rectangular solenoid, and this allows to place a predetermined portion of the sheet metal anywhere within the working region. Comparison of the indicators of electrodynamics processes in the considered variants of calculation shows an approximate growth of almost 1.5 times the power indicators in the area of the accepted dent in comparison with similar values for the entire area under the winding of the ISAS. Practical value. The results obtained are important for the practice of real estimates of the excited forces of attraction. With a decrease in the dent, the amplitude of the electrodynamics forces being excited is growing proportionally (for example, when the depth decreases by 3 mm, the forces increase more than 2 times). The highest efficiency of force attraction is for sheet metal regions, the dimensions do not exceed the transverse dimensions of the winding branches of the exciting solenoid.

References

1. Batygin Yu.V., Lavinskiy V.I., Khimenko L.T. Impul'snyye magnitnyye polya dlya progressivnykh tekhnologiy. Tom 1. Izdaniye vtoroye, pererabotannoye i dopolnennoye. [Pulsed magnetic fields for advanced technologies. Vol.1. 2nd edition, revised and enlarged.] Kharkov, MOST-Tornado Publ., 2003.

p. (Rus).

2. Yuriy V. Batygin, Sergey F. Golovashchenko, Andrey V. Gnatov. Pulsed electromagnetic attraction of sheet metals – fundamentals and perspective applications. Journal of Materials Processing Technology, 2013, vol.213, no.3, pp. 444-452.

doi: 10.1016/j.jmatprotec.2012.10.003.

3. Psyk V., Risch D., Kinsey B.L., Tekkaya A.E., Kleiner M. Electromagnetic forming – A review. Journal of Materials Processing Technology, 2011, vol.211, no.5, pp.787-829. doi: 10.1016/j.jmatprotec.2010.12.012.

4. Gnatov A., Argun S. New method of car body panel external straightening. Tools of method. International Journal of Vehicular Technology, 2015, vol.2015, pp. 1-7. doi: 10.1155/2015/192958.

5. Batygin Yuri V., Sergey F. Golovashchenko, Andrey V. Gnatov. Pulsed electromagnetic attraction of nonmagnetic sheet metals. Journal of Materials Processing Technology, 2014, vol.214, iss.2, pp. 390-401. doi: 10.1016/j.jmatprotec.2013.09.018.

6. Batygin Yu.V., Golovashchenko S.F., Gnatov A.V., Chaplygin E.A. Pulsed Electromagnetic Attraction Processes for Sheet Metal Components. Proceedings of the 6th International Conference High Speed Forming 2014, May 26-29, 2014, Daejeon, Korea, pp. 253-260.

7. Batygin Yu.V., Chaplygin E.A., Shinderuk S.A., Gavrilova O.E. Inductor system with attracting screen and rectangular solenoid. Automobile Transport, 2017, no.41, pp. 146-154. (Rus).

8. Chitode J.S. Signal an systems. Pune, India, Technical Publications, 2009. 767 p.

Published

2018-04-10

How to Cite

Chaplygin, E. A., Barbashova, M. V., & Koval, A. Y. (2018). NUMERICAL ESTIMATES OF ELECTRODYNAMICS PROCESSES IN THE INDUCTOR SYSTEM WITH AN ATTRACTIVE SCREEN AND A FLAT RECTANGULAR SOLENOID. Electrical Engineering & Electromechanics, (2), 54–58. https://doi.org/10.20998/2074-272X.2018.2.09

Issue

Section

Engineering Electrophysics. High Electric and Magnetic Field Engineering