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Experimental set up for magnetomechanical measurements with a closed flux path sample

Article dans une revue avec comité de lecture
Auteur
EL YOUSSEF, Mohamad
109876 Energy Lab [ENERGY Lab]
211915 Mechanics surfaces and materials processing [MSMP]
VAN GORP, Adrien
211915 Mechanics surfaces and materials processing [MSMP]
BENABOU, Abdelkader
FAVEROLLE, Pierre
552452 VALEO
MIPO, Jean-Claude
552452 VALEO
ccCLENET, Stephane
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]

URI
http://hdl.handle.net/10985/20020
DOI
10.1515/phys-2020-0160
Date
2020
Journal
Open Physics

Résumé

In this article, an experimental procedure is presented to handle magnetic measurements under uniaxial tensile stress reaching the plastic domain. The main advantage of the proposed procedure is that it does not require an additional magnetic core to close the magnetic flux path through the studied sample. The flux flows only in the sample, and no parasitic air gaps are introduced, thus avoiding the use of the H-coil to evaluate the magnetic field, which is often very sensitive and not easy to calibrate. A specimen of nonoriented FeSi (1.3%) sheet (M330-35A) is characterized under uniaxial tensile stress. To validate the proposed procedure, a comparison with the single sheet tester procedure is carried out. The results obtained by the two procedures are in good agreement. Moreover, to illustrate the possibilities offered by the proposed procedure, we confirm some results obtained in the literature. We show that the positive plastic strain leads to a significant degradation of magnetic behavior. An applied tensile stress on a virgin (unstrained) sample leads to a degradation of the magnetic behavior. However, on a pre-strained sample, an applied tensile stress results in reducing the deterioration caused by the plastic strain until a stress value called optimum is attained. Above this threshold, the magnetic behavior re-deteriorates progressively.

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Cette publication figure dans le(s) laboratoire(s) suivant(s)

  • Laboratoire d'Electrotechnique et d'Electronique de Puissance (L2EP) de Lille
  • Laboratoire Mechanics, Surfaces and Materials Processing (MSMP)

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