MULTILAYER INDUCTORS FOR INDUCTION HEAT TREATMENT INSTALLATION OF ALUMINUM CASTINGS WHEN PRESSING RODS FOR POWER CABLES
Article_2 PDF (Українська)

Keywords

electro-thermal processes
induction heat treatment
aluminum ingots
single-phase and three-phase multilayer inductors
computer modeling
efficiency of electro-heat treatment

How to Cite

Жаркін, А. ., Ю. . Гориславець, Глухенький O. ., and Р. . Білянін. “MULTILAYER INDUCTORS FOR INDUCTION HEAT TREATMENT INSTALLATION OF ALUMINUM CASTINGS WHEN PRESSING RODS FOR POWER CABLES”. Proceedings of the Institute of Electrodynamics of the National Academy of Sciences of Ukraine, no. 68, Sept. 2024, p. 013, doi:10.15407/publishing2024.68.013.

Abstract

On the basis of the developed mathematical model, computer (numerical) modeling of electrothermal processes in a multi-layer inductor installation, which is used for heating cylindrical aluminum ingots (blanks) before pressing the wire rod, as a basis for obtaining current-conducting cores of power cables from it, was carried out. Single-phase and three-phase multilayer inductors of the galette type were studied, as a result of which it was shown that the maximum value of the electrical efficiency of such an installation for both inductors is provided by their three-layer winding with a water-cooled copper tube of rectangular section. For both inductors, distributions along the radius and length of the aluminum blanks of the volumetric specific power and the specific linear power of heat release from the eddy currents induced in the blanks were obtained. For a three-phase inductor, such distributions were obtained when feeding it with voltages with phase shift angles of 120 and 60 degrees. The losses in the turns of the inductors and their distribution along the length and layers of both inductors were also studied. References 8, tables 2, figures 7.

https://doi.org/10.15407/publishing2024.68.013
Article_2 PDF (Українська)

References

Zolotarev V.M., Shcherba M.A., Guryn A.G., Suprunovskaya N.Y., Chopov E.Yu., Obozny A.L. Electrotechnological complex for the production of cable systems for a voltage of up to 400 kV. K.: Pri format. 2017. 594 p. (Rus)

Shidlovsky A.K., Shcherba A.A., Zolotarev V.M., Podoltsev A.D., Kucheryavaya I.N. Cables with polymer insulation for ultra-high voltage. K.: Institute of Electrodynamics of the National Academy of Sciences of Ukraine. 2013. 550 p. (Rus)

Zharkin A.F., Goryslavets Yu.M., Gluhenkyi O.I., Zolotaryov V.V., Bilyanin R.V. Modeling of electrothermal processes in the installation of induction heat treatment of aluminum ingots and determination of ways to increase its efficiency when pressing wire rod for power cables. Tekhnichna Electrodynamika. 2023. No. 6. Pp. 81–91. https://doi.org/10.15407/techned2023.06.081 (Ukr)

Comsol Multiphysics, https://www.comsol.com/.

Zlotnikov I.Y., Zakharov I.V. Increasing the efficiency of induction heating devices. Vestnik Gomelskogo Gosudarstvennogo Technicheskogo Universiteta. 2015. No. 4. Pp. 53-58. (Rus)

Harvey J.G. The theory of multi-layered windings for induction heating and their application to a 1 MW 50 Hz longitudinal flux billet heater. VIII Congress UIE. Liege. 1976. No. 4. P.11a.

Nemkov V.S., Demidovych V.B. Theory and calculation of induction heating devices. L.: Energoatomizdat, 1988. 271 p. (Rus)

Tikhomirov P.M. Calculation of transformers. M.: Energoatomizdat. 1986. 528 p. (Rus)

Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

Copyright (c) 2024 A.F. Zharkin, Yu.M. Goryslavets, O.I. Gluhenky, R.V. Belyanin

Downloads

Download data is not yet available.