Optimized regime of induction heating of a disk before its pressing on shaft
Identifieur interne :
000071 ( PascalFrancis/Curation );
précédent :
000070;
suivant :
000072
Optimized regime of induction heating of a disk before its pressing on shaft
Auteurs : Martin Skopek [
République tchèque] ;
Bohus Ulrych [
République tchèque] ;
Ivo Dolezel [
République tchèque]
Source :
-
IEEE transactions on magnetics [ 0018-9464 ] ; 2001.
RBID : Pascal:01-0466009
Descripteurs français
English descriptors
Abstract
The paper deals with induction heating of a metal disk before its pressing on a shaft with the aim to find the optimum parameters of its regime. The velocity and efficiency of the process is affected by the arrangement of the inductor, its position with respect to the heated disk, orientation of its windings, amplitude and frequency of the field current and material of the disk that may be ferromagnetic or nonmagnetic. The task is formulated as a weakly coupled problem. The computations are mostly carried out by the FEM-based professional programs OPERA and QuickField supplemented by special user procedures.
pA |
A01 | 01 | 1 | | @0 0018-9464 |
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A02 | 01 | | | @0 IEMGAQ |
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A03 | | 1 | | @0 IEEE trans. magn. |
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A05 | | | | @2 37 |
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A06 | | | | @2 5 @3 PART1 |
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A08 | 01 | 1 | ENG | @1 Optimized regime of induction heating of a disk before its pressing on shaft |
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A09 | 01 | 1 | ENG | @1 Selected Papers from the Ninth Biennial IEEE Conference on Electromagnetic Field Computation (CEFC), Milwaukee, Wisconsin, USA, June 4-7, 2000 |
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A11 | 01 | 1 | | @1 SKOPEK (Martin) |
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A11 | 02 | 1 | | @1 ULRYCH (Bohus) |
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A11 | 03 | 1 | | @1 DOLEZEL (Ivo) |
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A14 | 01 | | | @1 Faculty of Electrical Engineering, University of West Bohemia @2 306 14 Plzeň @3 CZE @Z 1 aut. @Z 2 aut. |
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A14 | 02 | | | @1 Institute of Electrical Engineering, Academy of Sciences of the Czech Republic @2 182 02 Praha @3 CZE @Z 3 aut. |
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A20 | | | | @1 3380-3383 |
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A21 | | | | @1 2001 |
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A23 | 01 | | | @0 ENG |
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A43 | 01 | | | @1 INIST @2 222H6 @5 354000099203080670 |
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A44 | | | | @0 0000 @1 © 2001 INIST-CNRS. All rights reserved. |
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A45 | | | | @0 4 ref. |
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A47 | 01 | 1 | | @0 01-0466009 |
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A60 | | | | @1 P @2 C |
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A61 | | | | @0 A |
---|
A64 | 01 | 1 | | @0 IEEE transactions on magnetics |
---|
A66 | 01 | | | @0 USA |
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C01 | 01 | | ENG | @0 The paper deals with induction heating of a metal disk before its pressing on a shaft with the aim to find the optimum parameters of its regime. The velocity and efficiency of the process is affected by the arrangement of the inductor, its position with respect to the heated disk, orientation of its windings, amplitude and frequency of the field current and material of the disk that may be ferromagnetic or nonmagnetic. The task is formulated as a weakly coupled problem. The computations are mostly carried out by the FEM-based professional programs OPERA and QuickField supplemented by special user procedures. |
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C02 | 01 | 3 | | @0 001B40A20G |
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C03 | 01 | 3 | FRE | @0 Chauffe induction @5 01 |
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C03 | 01 | 3 | ENG | @0 Induction heating @5 01 |
---|
C03 | 02 | 3 | FRE | @0 Champ électromagnétique @5 02 |
---|
C03 | 02 | 3 | ENG | @0 Electromagnetic fields @5 02 |
---|
C03 | 03 | 3 | FRE | @0 Simulation numérique @5 03 |
---|
C03 | 03 | 3 | ENG | @0 Digital simulation @5 03 |
---|
C03 | 04 | 3 | FRE | @0 Méthode élément fini @5 04 |
---|
C03 | 04 | 3 | ENG | @0 Finite element method @5 04 |
---|
C03 | 05 | 3 | FRE | @0 Champ température @5 05 |
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C03 | 05 | 3 | ENG | @0 Temperature distribution @5 05 |
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C03 | 06 | 3 | FRE | @0 Magnétostatique @5 06 |
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C03 | 06 | 3 | ENG | @0 Magnetostatics @5 06 |
---|
C03 | 07 | 3 | FRE | @0 Etude théorique @5 07 |
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C03 | 07 | 3 | ENG | @0 Theoretical study @5 07 |
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C03 | 08 | 3 | FRE | @0 4120G @2 PAC @4 INC @5 95 |
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N21 | | | | @1 330 |
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|
pR |
A30 | 01 | 1 | ENG | @1 CEFC Conference on Electromagnetic Field Computation @2 9 @3 Milwaukee, Wisconsin USA @4 2000-06-04 |
---|
|
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Le document en format XML
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<front><div type="abstract" xml:lang="en">The paper deals with induction heating of a metal disk before its pressing on a shaft with the aim to find the optimum parameters of its regime. The velocity and efficiency of the process is affected by the arrangement of the inductor, its position with respect to the heated disk, orientation of its windings, amplitude and frequency of the field current and material of the disk that may be ferromagnetic or nonmagnetic. The task is formulated as a weakly coupled problem. The computations are mostly carried out by the FEM-based professional programs OPERA and QuickField supplemented by special user procedures.</div>
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