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Characterization of massive magnetic parts with a dedicated device

Article dans une revue avec comité de lecture
Auteur
BORSENBERGER, Marc
544873 L2EP - Équipe Outils et Méthodes Numériques [OMN]
BENABOU, Abdelkader
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]
544873 L2EP - Équipe Outils et Méthodes Numériques [OMN]
ccBAUDOUIN, Cyrille
301320 École Nationale Supérieure d'Arts et Métiers [ENSAM]
107452 Laboratoire de Conception Fabrication Commande [LCFC]
ccBIGOT, Regis
107452 Laboratoire de Conception Fabrication Commande [LCFC]
FAVEROLLE, Pierre
529289 Valeo Equipements Electriques Moteur [VALEO PES Company]
MIPO, Jean-Claude
218959 Valeo Engine Cooling

URI
http://hdl.handle.net/10985/16759
DOI
10.3233/jae-170108
Date
2018
Journal
International Journal of Applied Electromagnetics and Mechanics

Résumé

Magnetic parts are usually composed of a stack of electrical steel laminations to reduce the eddy current losses. However, for cost reasons or for specific applications the magnetic core can be made from massive steel and thus manufactured with adapted processes such as forging. Such process may lead to inhomogeneous and degraded magnetic properties. Therefore, this study proposes a specific device for characterizing magnetic properties of samples which are to be representative of a massive part. The measure is based on the Faraday’s equation to determine the magnetic flux density and the Hall effect to estimate the magnetic field inside the sample. Practically this is realized with classical components such as Hall probes, a secondary winding and an electromagnet device. However their combination is unique to perform magnetic characterization on massive samples, which are less affected by the sampling technique and may have anisotropic properties. The device is dimensioned thanks to FE-Simulation and validated according repeatability, sensitivity and trueness analysis. Eventually the characterization is performed on samples with different material parameters showing the effect of the grain size on the specific losses. The expected effect of the grain flow on magnetic properties is however not proven yet.

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  • Laboratoire de Conception Fabrication Commande (LCFC)

Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Investigation of a Specific Magnetic Characterization dedicated to Manufactured Massive Cores 
    Communication avec acte
    BORSENBERGER, Marc; BENABOU, Abdelkader; ccBAUDOUIN, Cyrille; ccBIGOT, Regis; FAVEROLLE, Pierre; MIPO, Jean-Claude (Verlag Der Technischen Universität Graz, 2016-09)
    Magnetic parts are usually composed of a stack of electrical steel laminations to reduce the eddy current losses. However, for cost reasons or for specific applications the magnetic core can be made from massive steel and ...
  • Characterization of the local incremental permeability of a ferromagnetic plate based on a four needles technique 
    Article dans une revue avec comité de lecture
    ARBENZ, Laure; BENABOU, Abdelkader; ccCLENET, Stephane; FAVEROLLE, Pierre; MIPO, Jean-Claude (Institute of Electrical and Electronics Engineers, 2016)
    The performances of electrical machines depend highly on the behavior of ferromagnetic materials. In some applications, these materials operate under DC polarization, i.e. when the magnetic field oscillates around a DC ...
  • Slinky stator : The impact of manufacturing process on the magnetic properties 
    Communication avec acte
    EL YOUSSEF, Mohamad; VAN GORP, Adrien; BENABOU, Abdelkader; FAVEROLLE, Pierre; MIPO, Jean-Claude; LAVALLEY, Yannick; COUR, Christiane; LECUPPE, Thomas; ccCLENET, Stephane (IEEE, 2017)
    The manufacturing of a slinky stator core is the result of a sequence of difference processes: straightening, punching, rolling….. It has been shown in the literature that manufacturing processes lead to a degradation of ...
  • Improving global ferromagnetic characteristics of laminations by heterogeneous deformation 
    Article dans une revue avec comité de lecture
    EL YOUSSEF, Mohamad; VANGORP, Adrien; BENABOU, Abdelkader; FAVEROLLE, Pierre; MIPO, Jean-Claude; ccCLENET, Stephane (Institute of Electrical and Electronics Engineers, 2021)
    In this paper, an experimental procedure is presented in order to handle magnetic measurements under uniaxial tensile stress reaching the plastic domain. The main advantage of the proposed procedure is that it does not ...
  • Characterization of the local Electrical Properties of Electrical Machine Parts with non-Trivial Geometry 
    Article dans une revue avec comité de lecture
    ARBENZ, Laure; BENABOU, Abdelkader; MIPO, Jean-Claude; FAVEROLLE, Pierre; ccCLENET, Stephane (IOS Press, 2015)
    In electrical machines, knowing the electrical conductivity is of importance for the eddy current calculation, especially when massive iron parts are involved. Generally the conductivity is measured on samples of raw ...

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