Correlation between Magnetic Properties and Chemical Composition of Non-Oriented Electrical Steels Cut through Different Technologies

Due to worldwide regulations on electric motor manufacturing, the energy efficiency of these devices has to be constantly improved. A solution may reside in the fact that high quality materials and adequate cutting technologies should be carefully chosen. The magnetic properties of non-oriented elec...

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Main Authors: Gheorghe Paltanea, Veronica Manescu (Paltanea), Radu Stefanoiu, Iosif Vasile Nemoianu, Horia Gavrila
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/13/6/1455
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spelling doaj-afcf20bae1024993b0746ddda617f4a22020-11-25T03:10:06ZengMDPI AGMaterials1996-19442020-03-01136145510.3390/ma13061455ma13061455Correlation between Magnetic Properties and Chemical Composition of Non-Oriented Electrical Steels Cut through Different TechnologiesGheorghe Paltanea0Veronica Manescu (Paltanea)1Radu Stefanoiu2Iosif Vasile Nemoianu3Horia Gavrila4Faculty of Electrical Engineering, University Politehnica of Bucharest, 313 Splaiul Independentei, District 6, RO-060042 Bucharest, RomaniaFaculty of Electrical Engineering, University Politehnica of Bucharest, 313 Splaiul Independentei, District 6, RO-060042 Bucharest, RomaniaFaculty of Material Science & Engineering, University Politehnica of Bucharest, 313 Splaiul Independentei, District 6, RO-060042 Bucharest, RomaniaFaculty of Electrical Engineering, University Politehnica of Bucharest, 313 Splaiul Independentei, District 6, RO-060042 Bucharest, RomaniaFaculty of Electrical Engineering, University Politehnica of Bucharest, 313 Splaiul Independentei, District 6, RO-060042 Bucharest, RomaniaDue to worldwide regulations on electric motor manufacturing, the energy efficiency of these devices has to be constantly improved. A solution may reside in the fact that high quality materials and adequate cutting technologies should be carefully chosen. The magnetic properties of non-oriented electrical steels are affected by the cutting methods, through induced plastic, and thermal stresses. There is also an important correlation between chemical composition and different magnetic properties. In this paper, we analyze different industrial grades of non-oriented electrical steels, used in electrical machines’ core manufacturing as M800-65A, M800-50A, M400-65A, M400-50A, M300-35A, and NO20. The influence of the cutting methods on the normal magnetization curve, total energy loss and its components, and relative magnetic permeability is investigated in alternating currents using a laboratory single sheet tester. The chemical composition and grain size influence are analyzed and correlated with the magnetic properties. Special attention is devoted to the influence of the increased cutting perimeter on the energy losses and to the way it relates to each chemical alloy constituent. The final decision in what concerns the choice of the proper magnetic material and the specific cutting technology for the motor magnetic cores is imposed by the desired efficiency class and the specific industrial applications.https://www.mdpi.com/1996-1944/13/6/1455soft magnetic materialsnon-oriented electrical steelsenergy loss separationcutting technologymagnetic permeabilitychemical compositiongrain size
collection DOAJ
language English
format Article
sources DOAJ
author Gheorghe Paltanea
Veronica Manescu (Paltanea)
Radu Stefanoiu
Iosif Vasile Nemoianu
Horia Gavrila
spellingShingle Gheorghe Paltanea
Veronica Manescu (Paltanea)
Radu Stefanoiu
Iosif Vasile Nemoianu
Horia Gavrila
Correlation between Magnetic Properties and Chemical Composition of Non-Oriented Electrical Steels Cut through Different Technologies
Materials
soft magnetic materials
non-oriented electrical steels
energy loss separation
cutting technology
magnetic permeability
chemical composition
grain size
author_facet Gheorghe Paltanea
Veronica Manescu (Paltanea)
Radu Stefanoiu
Iosif Vasile Nemoianu
Horia Gavrila
author_sort Gheorghe Paltanea
title Correlation between Magnetic Properties and Chemical Composition of Non-Oriented Electrical Steels Cut through Different Technologies
title_short Correlation between Magnetic Properties and Chemical Composition of Non-Oriented Electrical Steels Cut through Different Technologies
title_full Correlation between Magnetic Properties and Chemical Composition of Non-Oriented Electrical Steels Cut through Different Technologies
title_fullStr Correlation between Magnetic Properties and Chemical Composition of Non-Oriented Electrical Steels Cut through Different Technologies
title_full_unstemmed Correlation between Magnetic Properties and Chemical Composition of Non-Oriented Electrical Steels Cut through Different Technologies
title_sort correlation between magnetic properties and chemical composition of non-oriented electrical steels cut through different technologies
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2020-03-01
description Due to worldwide regulations on electric motor manufacturing, the energy efficiency of these devices has to be constantly improved. A solution may reside in the fact that high quality materials and adequate cutting technologies should be carefully chosen. The magnetic properties of non-oriented electrical steels are affected by the cutting methods, through induced plastic, and thermal stresses. There is also an important correlation between chemical composition and different magnetic properties. In this paper, we analyze different industrial grades of non-oriented electrical steels, used in electrical machines’ core manufacturing as M800-65A, M800-50A, M400-65A, M400-50A, M300-35A, and NO20. The influence of the cutting methods on the normal magnetization curve, total energy loss and its components, and relative magnetic permeability is investigated in alternating currents using a laboratory single sheet tester. The chemical composition and grain size influence are analyzed and correlated with the magnetic properties. Special attention is devoted to the influence of the increased cutting perimeter on the energy losses and to the way it relates to each chemical alloy constituent. The final decision in what concerns the choice of the proper magnetic material and the specific cutting technology for the motor magnetic cores is imposed by the desired efficiency class and the specific industrial applications.
topic soft magnetic materials
non-oriented electrical steels
energy loss separation
cutting technology
magnetic permeability
chemical composition
grain size
url https://www.mdpi.com/1996-1944/13/6/1455
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