NUMERICAL ESTIMATES OF CURRENTS AND FORCES IN LINEAR TOOLS OF THE MAGNETIC-PULSE ATTRACTION OF METALS. PART 1: LOW ELECTRICAL CONDUCTANCE METALS

Purpose. The electrodynamics processes study in the linear tools of magnetic-pulsed attraction, the final result of which should be the physics-mathematical dependencies for the characteristics of the flowing processes, under the conditions of intensive penetration in metal of acting electromagnetic...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Yu. V. Batygin, E. A. Chaplygin, S. A. Shinderuk, V. A. Strelnikova
Formato: article
Lenguaje:EN
RU
UK
Publicado: National Technical University "Kharkiv Polytechnic Institute" 2019
Materias:
Acceso en línea:https://doaj.org/article/499b7a9498964abb8c77e1f0211938aa
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:499b7a9498964abb8c77e1f0211938aa
record_format dspace
spelling oai:doaj.org-article:499b7a9498964abb8c77e1f0211938aa2021-12-02T18:09:42ZNUMERICAL ESTIMATES OF CURRENTS AND FORCES IN LINEAR TOOLS OF THE MAGNETIC-PULSE ATTRACTION OF METALS. PART 1: LOW ELECTRICAL CONDUCTANCE METALS10.20998/2074-272X.2019.5.072074-272X2309-3404https://doaj.org/article/499b7a9498964abb8c77e1f0211938aa2019-10-01T00:00:00Zhttp://eie.khpi.edu.ua/article/view/2074-272X.2019.5.07/181784https://doaj.org/toc/2074-272Xhttps://doaj.org/toc/2309-3404Purpose. The electrodynamics processes study in the linear tools of magnetic-pulsed attraction, the final result of which should be the physics-mathematical dependencies for the characteristics of the flowing processes, under the conditions of intensive penetration in metal of acting electromagnetic fields, as well as numerical estimates of these processes main characteristics. Methodology. To carry out research, we used the fundamental statements of the electromagnetic field theory and the mathematical simulation with help of the standard codes from the Wolfram Mathematica package. Results. The functional dependencies for the space-temporal distributions of the currents and forces excited in the linear tools of magnetic-pulsed attraction under intensive penetration of the acting electromagnetic fields through the tool's conducting construction elements are used for the numerical estimates. From the calculation results it follows that from a physical point of view, the cause of the increase in attractive forces while decreasing the operating frequencies can be considered the intensification of penetration processes of the excited fields, which leads to increasing the magnetic pressure from the outside. Thus, the transition to low operating frequencies of the exciting currents can significantly increase the efficiency of the magnetic-pulsed attraction of the sheet metals with the linear tools. Originality. It was firstly determined that from the physical point of view, the reason for the increase in attractive forces with a decrease in operating frequencies can be considered the intensification of penetration processes of the excited fields, which leads to increasing the forces of magnetic pressure on the conductors from side of their external surfaces. Practical value. A usage of the obtained results will allow creating new, more efficient linear tools of magnetic-pulsed attraction of the low-electrical conduction sheet metals operating under conditions of intensive penetration of the electromagnetic fields being excited.Yu. V. BatyginE. A. ChaplyginS. A. ShinderukV. A. StrelnikovaNational Technical University "Kharkiv Polytechnic Institute"articlelinear tool for eliminating dents in sheet conductorsintensive penetration of the field into metals with low electrical conductancemagnetic-pulse attraction of conductors with unidirectional currentsElectrical engineering. Electronics. Nuclear engineeringTK1-9971ENRUUKElectrical engineering & Electromechanics, Iss 5, Pp 40-44 (2019)
institution DOAJ
collection DOAJ
language EN
RU
UK
topic linear tool for eliminating dents in sheet conductors
intensive penetration of the field into metals with low electrical conductance
magnetic-pulse attraction of conductors with unidirectional currents
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
spellingShingle linear tool for eliminating dents in sheet conductors
intensive penetration of the field into metals with low electrical conductance
magnetic-pulse attraction of conductors with unidirectional currents
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
Yu. V. Batygin
E. A. Chaplygin
S. A. Shinderuk
V. A. Strelnikova
NUMERICAL ESTIMATES OF CURRENTS AND FORCES IN LINEAR TOOLS OF THE MAGNETIC-PULSE ATTRACTION OF METALS. PART 1: LOW ELECTRICAL CONDUCTANCE METALS
description Purpose. The electrodynamics processes study in the linear tools of magnetic-pulsed attraction, the final result of which should be the physics-mathematical dependencies for the characteristics of the flowing processes, under the conditions of intensive penetration in metal of acting electromagnetic fields, as well as numerical estimates of these processes main characteristics. Methodology. To carry out research, we used the fundamental statements of the electromagnetic field theory and the mathematical simulation with help of the standard codes from the Wolfram Mathematica package. Results. The functional dependencies for the space-temporal distributions of the currents and forces excited in the linear tools of magnetic-pulsed attraction under intensive penetration of the acting electromagnetic fields through the tool's conducting construction elements are used for the numerical estimates. From the calculation results it follows that from a physical point of view, the cause of the increase in attractive forces while decreasing the operating frequencies can be considered the intensification of penetration processes of the excited fields, which leads to increasing the magnetic pressure from the outside. Thus, the transition to low operating frequencies of the exciting currents can significantly increase the efficiency of the magnetic-pulsed attraction of the sheet metals with the linear tools. Originality. It was firstly determined that from the physical point of view, the reason for the increase in attractive forces with a decrease in operating frequencies can be considered the intensification of penetration processes of the excited fields, which leads to increasing the forces of magnetic pressure on the conductors from side of their external surfaces. Practical value. A usage of the obtained results will allow creating new, more efficient linear tools of magnetic-pulsed attraction of the low-electrical conduction sheet metals operating under conditions of intensive penetration of the electromagnetic fields being excited.
format article
author Yu. V. Batygin
E. A. Chaplygin
S. A. Shinderuk
V. A. Strelnikova
author_facet Yu. V. Batygin
E. A. Chaplygin
S. A. Shinderuk
V. A. Strelnikova
author_sort Yu. V. Batygin
title NUMERICAL ESTIMATES OF CURRENTS AND FORCES IN LINEAR TOOLS OF THE MAGNETIC-PULSE ATTRACTION OF METALS. PART 1: LOW ELECTRICAL CONDUCTANCE METALS
title_short NUMERICAL ESTIMATES OF CURRENTS AND FORCES IN LINEAR TOOLS OF THE MAGNETIC-PULSE ATTRACTION OF METALS. PART 1: LOW ELECTRICAL CONDUCTANCE METALS
title_full NUMERICAL ESTIMATES OF CURRENTS AND FORCES IN LINEAR TOOLS OF THE MAGNETIC-PULSE ATTRACTION OF METALS. PART 1: LOW ELECTRICAL CONDUCTANCE METALS
title_fullStr NUMERICAL ESTIMATES OF CURRENTS AND FORCES IN LINEAR TOOLS OF THE MAGNETIC-PULSE ATTRACTION OF METALS. PART 1: LOW ELECTRICAL CONDUCTANCE METALS
title_full_unstemmed NUMERICAL ESTIMATES OF CURRENTS AND FORCES IN LINEAR TOOLS OF THE MAGNETIC-PULSE ATTRACTION OF METALS. PART 1: LOW ELECTRICAL CONDUCTANCE METALS
title_sort numerical estimates of currents and forces in linear tools of the magnetic-pulse attraction of metals. part 1: low electrical conductance metals
publisher National Technical University "Kharkiv Polytechnic Institute"
publishDate 2019
url https://doaj.org/article/499b7a9498964abb8c77e1f0211938aa
work_keys_str_mv AT yuvbatygin numericalestimatesofcurrentsandforcesinlineartoolsofthemagneticpulseattractionofmetalspart1lowelectricalconductancemetals
AT eachaplygin numericalestimatesofcurrentsandforcesinlineartoolsofthemagneticpulseattractionofmetalspart1lowelectricalconductancemetals
AT sashinderuk numericalestimatesofcurrentsandforcesinlineartoolsofthemagneticpulseattractionofmetalspart1lowelectricalconductancemetals
AT vastrelnikova numericalestimatesofcurrentsandforcesinlineartoolsofthemagneticpulseattractionofmetalspart1lowelectricalconductancemetals
_version_ 1718378624665518080